ip Consistency and variability of cocrystals containing positional isomers: the self-assembly evolution mechanism of supramolecular synthons of cresol–piperazine By scripts.iucr.org Published On :: 2019-10-09 The disposition of functional groups can induce variations in the nature and type of interactions and hence affect the molecular recognition and self-assembly mechanism in cocrystals. To better understand the formation of cocrystals on a molecular level, the effects of disposition of functional groups on the formation of cocrystals were systematically and comprehensively investigated using cresol isomers (o-, m-, p-cresol) as model compounds. Consistency and variability in these cocrystals containing positional isomers were found and analyzed. The structures, molecular recognition and self-assembly mechanism of supramolecular synthons in solution and in their corresponding cocrystals were verified by a combined experimental and theoretical calculation approach. It was found that the heterosynthons (heterotrimer or heterodimer) combined with O—H⋯N hydrogen bonding played a significant role. Hirshfeld surface analysis and computed interaction energy values were used to determine the hierarchical ordering of the weak interactions. The quantitative analyses of charge transfers and molecular electrostatic potential were also applied to reveal and verify the reasons for consistency and variability. Finally, the molecular recognition, self-assembly and evolution process of the supramolecular synthons in solution were investigated. The results confirm that the supramolecular synthon structures formed initially in solution would be carried over to the final cocrystals, and the supramolecular synthon structures are the precursors of cocrystals and the information memory of the cocrystallization process, which is evidence for classical nucleation theory. Full Article text
ip R3c-type LnNiO3 (Ln = La, Ce, Nd, Pm, Gd, Tb, Dy, Ho, Er, Lu) half-metals with multiple Dirac cones: a potential class of advanced spintronic materials By scripts.iucr.org Published On :: 2019-10-16 In the past three years, Dirac half-metals (DHMs) have attracted considerable attention and become a high-profile topic in spintronics becuase of their excellent physical properties such as 100% spin polarization and massless Dirac fermions. Two-dimensional DHMs proposed recently have not yet been experimentally synthesized and thus remain theoretical. As a result, their characteristics cannot be experimentally confirmed. In addition, many theoretically predicted Dirac materials have only a single cone, resulting in a nonlinear electromagnetic response with insufficient intensity and inadequate transport carrier efficiency near the Fermi level. Therefore, after several attempts, we have focused on a novel class of DHMs with multiple Dirac crossings to address the above limitations. In particular, we direct our attention to three-dimensional bulk materials. In this study, the discovery via first principles of an experimentally synthesized DHM LaNiO3 with many Dirac cones and complete spin polarization near the Fermi level is reported. It is also shown that the crystal structures of these materials are strongly correlated with their physical properties. The results indicate that many rhombohedral materials with the general formula LnNiO3 (Ln = La, Ce, Nd, Pm, Gd, Tb, Dy, Ho, Er, Lu) in the space group R3c are potential DHMs with multiple Dirac cones. Full Article text
ip The resolution revolution in cryoEM requires high-quality sample preparation: a rapid pipeline to a high-resolution map of yeast fatty acid synthase By scripts.iucr.org Published On :: 2020-01-25 Single-particle electron cryo-microscopy (cryoEM) has undergone a `resolution revolution' that makes it possible to characterize megadalton (MDa) complexes at atomic resolution without crystals. To fully exploit the new opportunities in molecular microscopy, new procedures for the cloning, expression and purification of macromolecular complexes need to be explored. Macromolecular assemblies are often unstable, and invasive construct design or inadequate purification conditions and sample-preparation methods can result in disassembly or denaturation. The structure of the 2.6 MDa yeast fatty acid synthase (FAS) has been studied by electron microscopy since the 1960s. Here, a new, streamlined protocol for the rapid production of purified yeast FAS for structure determination by high-resolution cryoEM is reported. Together with a companion protocol for preparing cryoEM specimens on a hydrophilized graphene layer, the new protocol yielded a 3.1 Å resolution map of yeast FAS from 15 000 automatically picked particles within a day. The high map quality enabled a complete atomic model of an intact fungal FAS to be built. Full Article text
ip Structures of the transcriptional regulator BgaR, a lactose sensor By scripts.iucr.org Published On :: 2019-06-26 The structure of BgaR, a transcriptional regulator of the lactose operon in Clostridium perfringens, has been solved by SAD phasing using a mercury derivative. BgaR is an exquisite sensor of lactose, with a binding affinity in the low-micromolar range. This sensor and regulator has been captured bound to lactose and to lactulose as well as in a nominal apo form, and was compared with AraC, another saccharide-binding transcriptional regulator. It is shown that the saccharides bind in the N-terminal region of a jelly-roll fold, but that part of the saccharide is exposed to bulk solvent. This differs from the classical AraC saccharide-binding site, which is mostly sequestered from the bulk solvent. The structures of BgaR bound to lactose and to lactulose highlight how specific and nonspecific interactions lead to a higher binding affinity of BgaR for lactose compared with lactulose. Moreover, solving multiple structures of BgaR in different space groups, both bound to saccharides and unbound, verified that the dimer interface along a C-terminal helix is similar to the dimer interface observed in AraC. Full Article text
ip Flexible workflows for on-the-fly electron-microscopy single-particle image processing using Scipion By scripts.iucr.org Published On :: 2019-10-01 Electron microscopy of macromolecular structures is an approach that is in increasing demand in the field of structural biology. The automation of image acquisition has greatly increased the potential throughput of electron microscopy. Here, the focus is on the possibilities in Scipion to implement flexible and robust image-processing workflows that allow the electron-microscope operator and the user to monitor the quality of image acquisition, assessing very simple acquisition measures or obtaining a first estimate of the initial volume, or the data resolution and heterogeneity, without any need for programming skills. These workflows can implement intelligent automatic decisions and they can warn the user of possible acquisition failures. These concepts are illustrated by analysis of the well known 2.2 Å resolution β-galactosidase data set. Full Article text
ip Well-based crystallization of lipidic cubic phase microcrystals for serial X-ray crystallography experiments By scripts.iucr.org Published On :: 2019-10-01 Serial crystallography is having an increasing impact on structural biology. This emerging technique opens up new possibilities for studying protein structures at room temperature and investigating structural dynamics using time-resolved X-ray diffraction. A limitation of the method is the intrinsic need for large quantities of well ordered micrometre-sized crystals. Here, a method is presented to screen for conditions that produce microcrystals of membrane proteins in the lipidic cubic phase using a well-based crystallization approach. A key advantage over earlier approaches is that the progress of crystal formation can be easily monitored without interrupting the crystallization process. In addition, the protocol can be scaled up to efficiently produce large quantities of crystals for serial crystallography experiments. Using the well-based crystallization methodology, novel conditions for the growth of showers of microcrystals of three different membrane proteins have been developed. Diffraction data are also presented from the first user serial crystallography experiment performed at MAX IV Laboratory. Full Article text
ip The evolving story of AtzT, a periplasmic binding protein By scripts.iucr.org Published On :: 2019-10-31 Atrazine is an s-triazine-based herbicide that is used in many countries around the world in many millions of tons per year. A small number of organisms, such as Pseudomonas sp. strain ADP, have evolved to use this modified s-triazine as a food source, and the various genes required to metabolize atrazine can be found on a single plasmid. The atomic structures of seven of the eight proteins involved in the breakdown of atrazine by Pseudomonas sp. strain ADP have been determined by X-ray crystallography, but the structures of the proteins required by the cell to import atrazine for use as an energy source are still lacking. The structure of AtzT, a periplasmic binding protein that may be involved in the transport of a derivative of atrazine, 2-hydroxyatrazine, into the cell for mineralization, has now been determined. The structure was determined by SAD phasing using an ethylmercury phosphate derivative that diffracted X-rays to beyond 1.9 Å resolution. `Native' (guanine-bound) and 2-hydroxyatrazine-bound structures were also determined to high resolution (1.67 and 1.65 Å, respectively), showing that 2-hydroxyatrazine binds in a similar way to the purportedly native ligand. Structural similarities led to the belief that it may be possible to evolve AtzT from a purine-binding protein to a protein that can bind and detect atrazine in the environment. Full Article text
ip SEQUENCE SLIDER: expanding polyalanine fragments for phasing with multiple side-chain hypotheses By scripts.iucr.org Published On :: 2020-02-25 Fragment-based molecular-replacement methods can solve a macromolecular structure quasi-ab initio. ARCIMBOLDO, using a common secondary-structure or tertiary-structure template or a library of folds, locates these with Phaser and reveals the rest of the structure by density modification and autotracing in SHELXE. The latter stage is challenging when dealing with diffraction data at lower resolution, low solvent content, high β-sheet composition or situations in which the initial fragments represent a low fraction of the total scattering or where their accuracy is low. SEQUENCE SLIDER aims to overcome these complications by extending the initial polyalanine fragment with side chains in a multisolution framework. Its use is illustrated on test cases and previously unknown structures. The selection and order of fragments to be extended follows the decrease in log-likelihood gain (LLG) calculated with Phaser upon the omission of each single fragment. When the starting substructure is derived from a remote homolog, sequence assignment to fragments is restricted by the original alignment. Otherwise, the secondary-structure prediction is matched to that found in fragments and traces. Sequence hypotheses are trialled in a brute-force approach through side-chain building and refinement. Scoring the refined models through their LLG in Phaser may allow discrimination of the correct sequence or filter the best partial structures for further density modification and autotracing. The default limits for the number of models to pursue are hardware dependent. In its most economic implementation, suitable for a single laptop, the main-chain trace is extended as polyserine rather than trialling models with different sequence assignments, which requires a grid or multicore machine. SEQUENCE SLIDER has been instrumental in solving two novel structures: that of MltC from 2.7 Å resolution data and that of a pneumococcal lipoprotein with 638 residues and 35% solvent content. Full Article text
ip On the puzzling case of sodium saccharinate 1.875-hydrate: structure description in (3+1)-dimensional superspace By scripts.iucr.org Published On :: 2020-02-01 The structure of sodium saccharinate 1.875-hydrate is presented in three- and (3+1)-dimensional space. The present model is more accurate than previously published superstructures, due to an excellent data set collected up to a high resolution of 0.89 Å−1. The present study confirms the unusual complexity of the structure comprising a very large primitive unit cell with Z' = 16. A much smaller degree of correlated disorder of parts of the unit cell is found than is present in the previously published models. As a result of pseudo-symmetry, the structure can be described in a higher-dimensional space. The X-ray diffraction data clearly indicate a (3+1)-dimensional periodic structure with stronger main reflections and weaker superstructure reflections. Furthermore, the structure is established as being commensurate. The structure description in superspace results in a four times smaller unit cell with an additional base centring of the lattice, resulting in an eightfold substructure (Z' = 2) of the 3D superstructure. Therefore, such a superspace approach is desirable to work out this high-Z' structure. The displacement and occupational modulation of the saccharinate anions have been studied, as well as their conformational variation along the fourth dimension. Full Article text
ip XTIP – the world's first beamline dedicated to the synchrotron X-ray scanning tunneling microscopy technique By scripts.iucr.org Published On :: 2020-04-14 In recent years, there have been numerous efforts worldwide to develop the synchrotron X-ray scanning tunneling microscopy (SX-STM) technique. Here, the inauguration of XTIP, the world's first beamline fully dedicated to SX-STM, is reported. The XTIP beamline is located at Sector 4 of the Advanced Photon Source at Argonne National Laboratory. It features an insertion device that can provide left- or right-circular as well as horizontal- and vertical-linear polarization. XTIP delivers monochromatic soft X-rays of between 400 and 1900 eV focused into an environmental enclosure that houses the endstation instrument. This article discusses the beamline system design and its performance. Full Article text
ip Synchrotron multimodal imaging in a whole cell reveals lipid droplet core organization By scripts.iucr.org Published On :: 2020-04-23 A lipid droplet (LD) core of a cell consists mainly of neutral lipids, triacylglycerols and/or steryl esters (SEs). The structuration of these lipids inside the core is still under debate. Lipid segregation inside LDs has been observed but is sometimes suggested to be an artefact of LD isolation and chemical fixation. LD imaging in their native state and in unaltered cellular environments appears essential to overcome these possible technical pitfalls. Here, imaging techniques for ultrastructural study of native LDs in cellulo are provided and it is shown that LDs are organized structures. Cryo soft X-ray tomography and deep-ultraviolet (DUV) transmittance imaging are showing a partitioning of SEs at the periphery of the LD core. Furthermore, DUV transmittance and tryptophan/tyrosine auto-fluorescence imaging on living cells are combined to obtain complementary information on cell chemical contents. This multimodal approach paves the way for a new label-free organelle imaging technique in living cells. Full Article text
ip Synchrotron X-ray diffraction investigation of the surface condition of artefacts from King Henry VIII's warship the Mary Rose By scripts.iucr.org Published On :: 2020-04-15 Synchrotron X-ray diffraction (XRD) measured on the XMaS beamline at the ESRF was used to characterize the alloy composition and crystalline surface corrosion of three copper alloy Tudor artefacts recovered from the undersea wreck of King Henry VIII's warship the Mary Rose. The XRD method adopted has a dynamic range ∼1:105 and allows reflections <0.002% of the height of major reflections in the pattern to be discerned above the background without smoothing. Laboratory XRD, scanning electron microscopy–energy dispersive spectroscopy, synchrotron X-ray fluorescence and X-ray excited optical luminescence–X-ray near-edge absorption structure were used as supporting techniques, and the combination revealed structural and compositional features of importance to both archaeology and conservation. The artefacts were brass links believed to be fragments of chainmail and were excavated from the seabed during 1981 and 1982. Their condition reflects very different treatment just after recovery, viz. complete cleaning and conservation, chemical corrosion inhibition and chloride removal only, and distilled water soaking only (to remove the chlorides). The brass composition has been determined for all three at least in the top 7 µm or so as Cu(73%)Zn(27%) from the lattice constant. Measurement of the peak widths showed significant differences in the crystallite size and microstrain between the three samples. All of the links are found to be almost chloride-free with the main corrosion products being spertiniite, sphalerite, zincite, covellite and chalcocite. The balance of corrosion products between the links reflects the conservation treatment applied to one and points to different corrosion environments for the other two. Full Article text
ip In meso crystallogenesis. Compatibility of the lipid cubic phase with the synthetic digitonin analogue, glyco-diosgenin By scripts.iucr.org Published On :: 2020-03-25 Digitonin has long been used as a mild detergent for extracting proteins from membranes for structure and function studies. As supplied commercially, digitonin is inhomogeneous and requires lengthy pre-treatment for reliable downstream use. Glyco-diosgenin (GDN) is a recently introduced synthetic surfactant with features that mimic digitonin. It is available in homogeneously pure form. GDN is proving to be a useful detergent, particularly in the area of single-particle cryo-electron microscopic studies of membrane integral proteins. With a view to using it as a detergent for crystallization trials by the in meso or lipid cubic phase method, it was important to establish the carrying capacity of the cubic mesophase for GDN. This was quantified in the current study using small-angle X-ray scattering for mesophase identification and phase microstructure characterization as a function of temperature and GDN concentration. The data show that the lipid cubic phase formed by hydrated monoolein tolerates GDN to concentrations orders of magnitude in excess of those used for membrane protein studies. Thus, having GDN in a typical membrane protein preparation should not deter use of the in meso method for crystallogenesis. Full Article text
ip Usefulness of oils for cleaning the host matrix and for cryoprotection of lipidic cubic phase crystals By journals.iucr.org Published On :: Several oils were examined for use in the cleaning and cryoprotection of crystals in the lipidic cubic phase in terms of their effect on the crystal stability, the background scattering and the facilitation of the experiment. Full Article text
ip Disorder in La1−xBa1+xGaO4−x/2 ionic conductor: resolving the pair distribution function through insight from first-principles modeling By journals.iucr.org Published On :: Ba excess in LaBaGaO4 triggers ionic conductivity together with structural disorder. A direct correlation is found between the density functional theory model energy and the pair distribution function fit residual. Full Article text
ip New attempt to combine scanning electron microscopy and small-angle scattering in reciprocal space By journals.iucr.org Published On :: An attempt has been made to combine small-angle scattering of X-rays or neutrons with scanning electron microscopy in reciprocal space, in order to establish a structural analysis method covering a wide range of sizes from micro- to macro-scales. Full Article text
ip Full reciprocal-space mapping up to 2000 K under controlled atmosphere: the multipurpose QMAX furnace By journals.iucr.org Published On :: This article presents the capability of the QMAX furnace, devoted to reciprocal space mapping through X-ray scattering at high temperature up to 2000 K. Full Article text
ip Equatorial aberration of powder diffraction data collected with an Si strip X-ray detector by a continuous-scan integration method By journals.iucr.org Published On :: Exact and approximate formulas for equatorial aberration of a continuous-scan Si strip detector are compared. Full Article text
ip catena-Poly[[[aquacopper(II)]-μ-(biphenyl-2,2'-dicarboxylato)-μ-[N,N'-bis(pyridin-4-yl)urea]] 1.25-hydrate] By scripts.iucr.org Published On :: 2020-05-05 In the title compound, {[Cu(C14H8O4)(C11H10N4O)(H2O)]·1.25H2O}n, the CuII cations are coordinated in a square-pyramidal fashion by trans carboxylate O-atom donors from two diphenate (dip) ligands, trans pyridyl N-atom donors from two bis(4-pyridyl)urea (bpu) ligands, and a ligated water molecule in the apical position. [Cu(H2O)(dip)(bpu)]n coordination polymer layer motifs are oriented parallel to (overline{1}02). These layer motifs display a standard (4,4) rectangular grid topology and stack in an AAA pattern along the a-axis direction to form the full three-dimensional crystal structure of the title compound, mediated by N—H...O and O—H...O hydrogen bonding patterns involving the water molecules of crystallization. Full Article text
ip Structure of the 4-hydroxy-tetrahydrodipicolinate synthase from the thermoacidophilic methanotroph Methylacidiphilum fumariolicum SolV and the phylogeny of the aminotransferase pathway By journals.iucr.org Published On :: Insights were obtained into the structure of the 4-hydroxy-tetrahydrodipicolinate synthase from the thermoacidophilic methanotroph Methylacidiphilum fumariolicum SolV and the phylogeny of the aminotransferase pathway for the biosynthesis of lysine. Full Article text
ip Structure of the dihydrolipoamide succinyltransferase catalytic domain from Escherichia coli in a novel crystal form: a tale of a common protein crystallization contaminant By scripts.iucr.org Published On :: 2019-08-29 The crystallization of amidase, the ultimate enzyme in the Trp-dependent auxin-biosynthesis pathway, from Arabidopsis thaliana was attempted using protein samples with at least 95% purity. Cube-shaped crystals that were assumed to be amidase crystals that belonged to space group I4 (unit-cell parameters a = b = 128.6, c = 249.7 Å) were obtained and diffracted to 3.0 Å resolution. Molecular replacement using structures from the PDB containing the amidase signature fold as search models was unsuccessful in yielding a convincing solution. Using the Sequence-Independent Molecular replacement Based on Available Databases (SIMBAD) program, it was discovered that the structure corresponded to dihydrolipoamide succinyltransferase from Escherichia coli (PDB entry 1c4t), which is considered to be a common crystallization contaminant protein. The structure was refined to an Rwork of 23.0% and an Rfree of 27.2% at 3.0 Å resolution. The structure was compared with others of the same protein deposited in the PDB. This is the first report of the structure of dihydrolipoamide succinyltransferase isolated without an expression tag and in this novel crystal form. Full Article text
ip Shipping industry sends help as project in Panama tackles amphibian crisis By insider.si.edu Published On :: Fri, 23 Apr 2010 13:34:26 +0000 The rescue pods will be part of the project’s Amphibian Rescue Center at Summit Municipal Park, which will also include a lab with a quarantine facility. The post Shipping industry sends help as project in Panama tackles amphibian crisis appeared first on Smithsonian Insider. Full Article Animals Research News Science & Nature amphibian biodiversity chytrid fungus conservation conservation biology endangered species extinction Tropical Research Institute
ip Turkey’s trip to table: Domesticating North America’s largest fowl By insider.si.edu Published On :: Mon, 22 Nov 2010 20:21:26 +0000 The turkey has become synonymous with Thanksgiving in the United States. But when exactly where turkeys first domesticated? And where? Bruce Smith, senior archeologist at the Smithsonian’s National Museum of Natural History has the answers. The post Turkey’s trip to table: Domesticating North America’s largest fowl appeared first on Smithsonian Insider. Full Article Research News Science & Nature birds Feather Identification Lab National Museum of Natural History prehistoric
ip Discovery triples number of stars in universe By insider.si.edu Published On :: Wed, 01 Dec 2010 18:54:29 +0000 The team discovered that there are about 20 times more red dwarfs in elliptical galaxies than in the Milky Way, said Charlie Conroy of the Harvard-Smithsonian Center for Astrophysics. The post Discovery triples number of stars in universe appeared first on Smithsonian Insider. Full Article Research News Science & Nature Space astronomy astrophysics Center for Astrophysics | Harvard & Smithsonian Milky Way Smithsonian Astrophysical Observatory
ip Tiger numbers could triple if large-scale landscapes are protected By insider.si.edu Published On :: Wed, 26 Jan 2011 16:07:05 +0000 The tiger reserves of Asia could support more than 10,000 wild tigers – three times the current number – if they are managed as large-scale […] The post Tiger numbers could triple if large-scale landscapes are protected appeared first on Smithsonian Insider. Full Article Animals Research News Science & Nature conservation conservation biology endangered species mammals Smithsonian's National Zoo
ip X-ray stripes in exploded star may reveal highest energies of cosmic rays produced in our Galaxy By insider.si.edu Published On :: Mon, 28 Mar 2011 14:00:54 +0000 The discovery of a pattern of X-ray “stripes” in the remains of an exploded star may provide the first direct evidence that a cosmic event […] The post X-ray stripes in exploded star may reveal highest energies of cosmic rays produced in our Galaxy appeared first on Smithsonian Insider. Full Article Research News Science & Nature astronomy astrophysics Center for Astrophysics | Harvard & Smithsonian Chandra X-Ray Observatory Smithsonian Astrophysical Observatory supernova
ip Smithsonian researchers help block ship-borne bioinvaders with new screening strategy By insider.si.edu Published On :: Tue, 29 Mar 2011 18:52:47 +0000 To help regulators and engineers develop and test such treatment systems, and ultimately enforce these standards, a team of researchers developed a statistical model to see how to count small, scarce organisms in large volumes of water accurately. The post Smithsonian researchers help block ship-borne bioinvaders with new screening strategy appeared first on Smithsonian Insider. Full Article Animals Marine Science Research News Science & Nature Chesapeake Bay conservation biology endangered species Smithsonian Environmental Research Center
ip The Kepler spacecraft’s astounding haul of multiple-planet systems By insider.si.edu Published On :: Tue, 24 May 2011 12:20:09 +0000 NASA's Kepler spacecraft is proving itself to be a prolific planet hunter. Within just the first four months of data, astronomers have found evidence for more than 1,200 planetary candidates. Of those, 408 reside in systems containing two or more planets, and most of those look very different than our solar system. The post The Kepler spacecraft’s astounding haul of multiple-planet systems appeared first on Smithsonian Insider. Full Article Research News Science & Nature Space astronomy astrophysics Center for Astrophysics | Harvard & Smithsonian planets Smithsonian Astrophysical Observatory
ip Smithsonian Conservation Biology Institute and George Mason University expand partnership By insider.si.edu Published On :: Fri, 01 Jul 2011 14:52:14 +0000 Scientists and educators from the Smithsonian Conservation Biology Institute and George Mason University broke ground June 29 on a green-design conservation complex that embodies the concept of the living classroom. The post Smithsonian Conservation Biology Institute and George Mason University expand partnership appeared first on Smithsonian Insider. Full Article Research News Science & Nature conservation biology endangered species Smithsonian Conservation Biology Institute
ip Stellar eclipse gives glimpse of exoplanet: New data reveals a ‘super-Earth’ next door, astronomically speaking By insider.si.edu Published On :: Wed, 20 Jul 2011 14:20:44 +0000 The far-out planet, named 55 Cancri e, is twice as big as Earth and nearly nine times more massive. It is most likely composed of rocky material, similar to Earth, supplemented with light elements such as water and hydrogen gas. Scientists estimate the planet’s surface is much hotter than ours: close to 2,700 degrees Celsius. The post Stellar eclipse gives glimpse of exoplanet: New data reveals a ‘super-Earth’ next door, astronomically speaking appeared first on Smithsonian Insider. Full Article Research News Science & Nature Space astronomy astrophysics Center for Astrophysics | Harvard & Smithsonian planets Smithsonian Astrophysical Observatory
ip Planet starship: runaway planets zoom at a fraction of light speed By insider.si.edu Published On :: Thu, 22 Mar 2012 14:43:10 +0000 Seven years ago, astronomers boggled when they found the first runaway star flying out of our Galaxy at a speed of 1.5 million miles per hour. Theorists wondered: Could the same thing happen to planets? New research shows that the answer is yes. The post Planet starship: runaway planets zoom at a fraction of light speed appeared first on Smithsonian Insider. Full Article Science & Nature Space astronomy astrophysics Center for Astrophysics | Harvard & Smithsonian Milky Way planets
ip Aircraft bird-strike reports can save lives. New video shows how to report, collect and ship evidence By insider.si.edu Published On :: Tue, 19 Jun 2012 13:23:11 +0000 A new video to help aviators identify the cause of bird strikes has been posted on YouTube by the U.S. Department of Agriculture's Wildlife Services Airport Wildlife Hazard Program and the Smithsonian's National Museum of Natural History. The post Aircraft bird-strike reports can save lives. New video shows how to report, collect and ship evidence appeared first on Smithsonian Insider. Full Article Animals Science & Nature aeronautics aviation bird strikes birds Feather Identification Lab National Museum of Natural History
ip Tropical arks reach tipping point By insider.si.edu Published On :: Wed, 25 Jul 2012 17:44:45 +0000 Almost half of the tropical forest reserves examined in a new study are ineffective, researchers say. The post Tropical arks reach tipping point appeared first on Smithsonian Insider. Full Article Animals Science & Nature biodiversity carbon dioxide climate change conservation conservation biology endangered species Peru South America Tropical Research Institute
ip Mississippi State borrows grasshopper collection from Smithsonian By insider.si.edu Published On :: Wed, 22 Aug 2012 17:34:12 +0000 JoVonn Hill, a research associate with the Mississippi Agricultural and Forestry Experiment Station at Mississippi State University, recently borrowed 32,000 grasshoppers from the Smithsonian’s National […] The post Mississippi State borrows grasshopper collection from Smithsonian appeared first on Smithsonian Insider. Full Article Animals Research News Science & Nature Spotlight conservation biology
ip Ships need to slow down for whales in Gulf of Panama, scientists advise By insider.si.edu Published On :: Thu, 27 Sep 2012 16:59:36 +0000 Researchers from the Smithsonian Tropical Research Institute are recommending that Panama adopt revised traffic patterns and slower speeds for vessels crossing the Gulf of Panama to reduce the risk of collisions between ships and whales. The post Ships need to slow down for whales in Gulf of Panama, scientists advise appeared first on Smithsonian Insider. Full Article Marine Science Science & Nature conservation conservation biology mammals Tropical Research Institute whales
ip Split-personality elliptical galaxy holds a hidden spiral By insider.si.edu Published On :: Thu, 25 Oct 2012 13:51:29 +0000 Astronomers have discovered that one well-known elliptical galaxy has a split personality. Centaurus A is hiding a gassy spiral in its center. The post Split-personality elliptical galaxy holds a hidden spiral appeared first on Smithsonian Insider. Full Article Science & Nature Space astronomy astrophysics Center for Astrophysics | Harvard & Smithsonian galaxies Smithsonian Astrophysical Observatory
ip Three Smithsonian scientists to participate in Aspen Ideas Festival By insider.si.edu Published On :: Mon, 24 Jun 2013 13:39:51 +0000 The Smithsonian is delighted to be included in this year’s Aspen Ideas Festival (June 26 – July 2 in Aspen, Colo.) which will gather some of […] The post Three Smithsonian scientists to participate in Aspen Ideas Festival appeared first on Smithsonian Insider. Full Article Research News Science & Nature Space asteroids astronomy astrophysics Center for Astrophysics | Harvard & Smithsonian Center for Earth and Planetary Studies Forest Global Earth Observatory National Air and Space Museum Smithsonian Astrophysical Observatory
ip NASA’s Chandra sees eclipsing planet in X-rays for first time By insider.si.edu Published On :: Wed, 14 Aug 2013 12:42:19 +0000 For the first time since exoplanets, or planets around stars other than the sun, were discovered almost 20 years ago, X-ray observations have detected an […] The post NASA’s Chandra sees eclipsing planet in X-rays for first time appeared first on Smithsonian Insider. Full Article Research News Science & Nature Space astronomy astrophysics Center for Astrophysics | Harvard & Smithsonian Chandra X-Ray Observatory Smithsonian Astrophysical Observatory
ip Can iPads help students learn science? By insider.si.edu Published On :: Thu, 05 Dec 2013 18:33:09 +0000 The scale of the universe can be difficult to comprehend. Pretend you are going to make a scale model with a basketball representing the Earth […] The post Can iPads help students learn science? appeared first on Smithsonian Insider. Full Article Research News Science & Nature Space Spotlight astronomy astrophysics Center for Astrophysics | Harvard & Smithsonian science education Smithsonian Astrophysical Observatory technology
ip Bats use water ripples to hunt frogs By insider.si.edu Published On :: Wed, 05 Feb 2014 19:01:22 +0000 As the male túngara frog serenades female frogs from a pond, he creates watery ripples that make him easier to target by rivals and predators […] The post Bats use water ripples to hunt frogs appeared first on Smithsonian Insider. Full Article Research News Science & Nature amphibian bats conservation frogs Tropical Research Institute
ip Commercial shipping lanes changed in Panama to save humpback whales By insider.si.edu Published On :: Wed, 28 May 2014 19:07:39 +0000 The Republic of Panama’s proposal to implement four Traffic Separation Schemes for commercial vessels entering and exiting the Panama Canal and ports was approved unanimously […] The post Commercial shipping lanes changed in Panama to save humpback whales appeared first on Smithsonian Insider. Full Article Marine Science Research News Science & Nature Colombia conservation conservation biology Ecuador endangered species South America Tropical Research Institute whales
ip Smithsonian & SVF launch rare-breed livestock conservation partnership By insider.si.edu Published On :: Thu, 31 Jul 2014 12:54:04 +0000 The Smithsonian Conservation Biology Institute and the SVF Foundation have launched a new collaboration to strengthen rare and endangered livestock breed conservation through the preservation […] The post Smithsonian & SVF launch rare-breed livestock conservation partnership appeared first on Smithsonian Insider. Full Article Animals Research News Science & Nature conservation conservation biology endangered species mammals Smithsonian Conservation Biology Institute Smithsonian's National Zoo veterinary medicine
ip Simple tips to keep your backyard birds healthy this winter By insider.si.edu Published On :: Fri, 19 Sep 2014 13:58:58 +0000 What crunchy food did Americans spend $5.5 billion on last year—with sales that spiked before snow and ice storms? If you guessed birdseed then you […] The post Simple tips to keep your backyard birds healthy this winter appeared first on Smithsonian Insider. Full Article Science & Nature birds Migratory Bird Center Smithsonian's National Zoo
ip Bizarre ocean amphipod has 16 retinas in each eye By insider.si.edu Published On :: Thu, 15 Jan 2015 17:01:37 +0000 Tiny and transparent the marine crustacean Paraphronima gracilis sees the world through two large eyes that envelope its head like a high-tech space helmet. Now, […] The post Bizarre ocean amphipod has 16 retinas in each eye appeared first on Smithsonian Insider. Full Article Animals Marine Science Science & Nature National Museum of Natural History
ip Sol Man: John Grant is on a road trip across Mars By insider.si.edu Published On :: Mon, 06 Jul 2015 13:25:41 +0000 Two rovers are active right now on the surface of Mars: Opportunity, which landed in January 2004, and Curiosity, which started exploration in August 2012. […] The post Sol Man: John Grant is on a road trip across Mars appeared first on Smithsonian Insider. Full Article Meet Our People Q & A Research News Science & Nature Space astronomy astrophysics National Air and Space Museum prehistoric rocks & minerals technology
ip Smithsonian-Cornell Partnership produces First Domestic Puppies by In Vitro Fertilization By insider.si.edu Published On :: Wed, 09 Dec 2015 16:00:32 +0000 After decades of attempts, Smithsonian Conservation Biology Institute (SCBI) scientists and researchers at Cornell University have become the first to successfully use in vitro fertilization […] The post Smithsonian-Cornell Partnership produces First Domestic Puppies by In Vitro Fertilization appeared first on Smithsonian Insider. Full Article Animals Research News Science & Nature conservation conservation biology endangered species mammals Smithsonian Conservation Biology Institute Smithsonian's National Zoo technology
ip Did ripening fruit help hominids develop complex hands? By insider.si.edu Published On :: Thu, 12 May 2016 11:32:13 +0000 One of the primary features that distinguish hominids such as chimpanzees, gorillas and humans from the rest of the animal kingdom are uniquely dexterous hands. […] The post Did ripening fruit help hominids develop complex hands? appeared first on Smithsonian Insider. Full Article Animals Anthropology Research News Science & Nature evolution mammals Smithsonian's National Zoo Tropical Research Institute
ip Farthest Milky Way stars might be ripped from another galaxy By insider.si.edu Published On :: Wed, 11 Jan 2017 15:52:33 +0000 The 11 farthest known stars in our galaxy are located about 300,000 light-years from Earth, well outside the Milky Way’s spiral disk. New research by […] The post Farthest Milky Way stars might be ripped from another galaxy appeared first on Smithsonian Insider. Full Article Science & Nature Space Center for Astrophysics | Harvard & Smithsonian Milky Way Smithsonian Astrophysical Observatory
ip Meet the candy striped hermit crab, a new Caribbean species By insider.si.edu Published On :: Thu, 26 Jan 2017 14:43:20 +0000 Recent underwater photographs and video from the National Marine Park of the southern Caribbean island of Bonaire has led to the discovery of a new species […] The post Meet the candy striped hermit crab, a new Caribbean species appeared first on Smithsonian Insider. Full Article Animals Marine Science Research News Science & Nature biodiversity Caribbean fishes National Museum of Natural History
ip 3D simulations reveals why the Sun flips its magnetic field every 11 years By insider.si.edu Published On :: Thu, 27 Jul 2017 01:38:50 +0000 Using new numerical simulations and observations, scientists may now be able to explain why the Sun’s magnetic field reverses every eleven years. This significant discovery […] The post 3D simulations reveals why the Sun flips its magnetic field every 11 years appeared first on Smithsonian Insider. Full Article Research News Science & Nature Space Center for Astrophysics | Harvard & Smithsonian Smithsonian Astrophysical Observatory