t2

Women’s T20 World Cup 2020: India enters maiden final after semifinal against England washed out

Persistent rain since morning delayed the toss and eventually the semifinal was called off without a ball being bowled, taking Indians into the summit clash and leaving England players in tears.




t2

Just be in that moment: Sachin Tendulkar’s message to Indian women’s team before World T20 final

India entered the final after their last-four clash against England was washed out in Sydney. They had topped the group.




t2

PM Modi extends best wishes to India, Australia ahead of Women’s T20 World Cup final

Prime Minister Narendra Modi has extended his best wishes to Indian and Australian teams ahead of the Women's Twenty20 World Cup final at the Melbourne Cricket Ground on Sunday.




t2

Women’s T20 World Cup: Australia outclass India in final, lift trophy for record 5th time

Overwhelmed by the occasion, India crumbled to 99 all out in front of a turnout of 86174 at the iconic Melbourne Cricket Ground, a record in women's cricket history.




t2

Coronavirus patient present in stadium during ICC Women’s T20 World Cup Final, says MCG, issues checklist

The MCG in its statement shared the Australian DHHS's recommendation for those who were seated in section N42 of the ground during Sunday’s ICC Women’s T20 World Cup Final.




t2

Kuldeep Yadav bats for MS Dhoni in ICC World T20 squad, says his presence ‘will make it easier for India’

The ongoing Coronavirus crisis across the world and a prolonged lockdown in India has halted MS Dhoni’s planned comeback to competitive cricket. He had joined the training camp with his IPL franchise team Chennai Super Kings but the initial delays in the start of IPL until April 15 and then for an indefinite period stopped him to press on for a place in the Indian squad.




t2

T20-2020 BIOVIA Direct 2020: Support of BIOVIA Direct on Oracle Exadata Database Machine

BIOVIA Direct 2020




t2

T23-2020 Notification regarding BIOVIA Pipeline Pilot Chemistry 2019 Hot Fix 3

BIOVIA Pipeline Pilot Chemistry SDK 2019




t2

T24-2020 Notification regarding BIOVIA Pipeline Pilot Chemistry 2020 Hot Fix 1

BIOVIA Pipeline Pilot Chemistry SDK 2020







t2

T21-2020 Creating a Domain Index on BIOVIA Databases for Direct 2016, 2017 R2, 2018, or Direct 2020

BIOVIA Direct





t2

Packet Storm Exploit 2014-1204-1 - Offset2lib: Bypassing Full ASLR On 64bit Linux

Proof of concept code that demonstrates an ASLR bypass of PIE compiled 64bit Linux.




t2

Packet Storm Advisory 2014-1204-1 - Offset2lib: Bypassing Full ASLR On 64bit Linux

The release of this advisory provides exploitation details in relation a weakness in the Linux ASLR implementation. The problem appears when the executable is PIE compiled and it has an address leak belonging to the executable. These details were obtained through the Packet Storm Bug Bounty program and are being released to the community.




t2

mXT2113TD-AT_2v0_Protocol_Guide_A.zip

mXT2113TD-AT_2v0_Protocol_Guide_A.zip




t2

mXT2912TD-AT_1v0_Protocol_Guide_A.zip

mXT2912TD-AT_1v0_Protocol_Guide_A.zip




t2

mXT2912TD-AT_2v0_Protocol_Guide_A.zip

mXT2912TD-AT_2v0_Protocol_Guide_A.zip




t2

SST26VF040A Software Driver

SST26VF040A Software Driver




t2

SST26VF020A Software Driver

SST26VF020A Software Driver




t2

mXT2912TDAT_0x38_2.0.AA_PROD.enc.zip

mXT2912TDAT_0x38_2.0.AA_PROD.enc.zip




t2

mXT2113TDAT_0x3E_2.0.AA_PROD.enc.zip

mXT2113TDAT_0x3E_2.0.AA_PROD.enc.zip




t2

mXT2912TD Touchscreen Controller Product Datasheet_V2.0.pdf

mXT2912TD Touchscreen Controller Product Datasheet_V2.0.pdf




t2

mXT2113TD Touchscreen Controller Product Datasheet_V2.0.pdf

mXT2113TD Touchscreen Controller Product Datasheet_V2.0.pdf




t2

AT25010B/AT25020B/AT25040B SPI Automotive Temperature Serial EEPROM Data Sheet

AT25010B/AT25020B/AT25040B SPI Automotive Temperature Serial EEPROM Data Sheet




t2

AT25128B/256B Automotive - Complete Datasheet

AT25128B/256B Automotive - Complete Datasheet




t2

SST26VF064BEUI

SST26VF064BEUI




t2

SST26VF032BEUI

SST26VF032BEUI




t2

SST26VF016BEUI

SST26VF016BEUI




t2

SST26VF080A

SST26VF080A




t2

SST26VF040A

SST26VF040A




t2

SST26VF020A

SST26VF020A




t2

The Cellular Response to Lanthanum Is Substrate Specific and Reveals a Novel Route for Glycerol Metabolism in Pseudomonas putida KT2440

ABSTRACT

Ever since the discovery of the first rare earth element (REE)-dependent enzyme, the physiological role of lanthanides has become an emerging field of research due to the environmental implications and biotechnological opportunities. In Pseudomonas putida KT2440, the two pyrroloquinoline quinone-dependent alcohol dehydrogenases (PQQ-ADHs) PedE and PedH are inversely regulated in response to REE availability. This transcriptional switch is orchestrated by a complex regulatory network that includes the PedR2/PedS2 two-component system and is important for efficient growth on several alcoholic volatiles. To study whether cellular responses beyond the REE switch exist, the differential proteomic responses that occur during growth on various model carbon sources were analyzed. Apart from the Ca2+-dependent enzyme PedE, the differential abundances of most identified proteins were conditional. During growth on glycerol—and concomitant with the proteomic changes—lanthanum (La3+) availability affected different growth parameters, including the onset of logarithmic growth and final optical densities. Studies with mutant strains revealed a novel metabolic route for glycerol utilization, initiated by PedE and/or PedH activity. Upon oxidation to glycerate via glyceraldehyde, phosphorylation by the glycerate kinase GarK most likely yields glycerate-2-phosphate, which is eventually channeled into the central metabolism of the cell. This new route functions in parallel with the main degradation pathway encoded by the glpFKRD operon and provides a growth advantage to the cells by allowing an earlier onset of growth with glycerol as the sole source of carbon and energy.

IMPORTANCE The biological role of REEs has long been underestimated, and research has mainly focused on methanotrophic and methylotrophic bacteria. We have recently demonstrated that P. putida, a plant growth-promoting bacterium that thrives in the rhizosphere of various food crops, possesses a REE-dependent alcohol dehydrogenase (PedH), but knowledge about REE-specific effects on physiological traits in nonmethylotrophic bacteria is still scarce. This study demonstrates that the cellular response of P. putida to lanthanum (La3+) is mostly substrate specific and that La3+ availability highly affects the growth of cells on glycerol. Further, a novel route for glycerol metabolism is identified, which is initiated by PedE and/or PedH activity and provides a growth advantage to this biotechnologically relevant organism by allowing a faster onset of growth. Overall, these findings demonstrate that lanthanides can affect physiological traits in nonmethylotrophic bacteria and might influence their competitiveness in various environmental niches.




t2

OsNAR2.1 Interaction with OsNIT1 and OsNIT2 Functions in Root-growth Responses to Nitrate and Ammonium

The nitrate transport accessory protein OsNAR2 plays a critical role in root-growth responses to nitrate and nitrate acquisition in rice (Oryza sativa). In this study, a pull-down assay combined with yeast two-hybrid and coimmunoprecipitation analyses revealed that OsNAR2.1 interacts with OsNIT1 and OsNIT2. Moreover, an in vitro nitrilase activity assay indicated that indole-3-acetonitrile (IAN) is hydrolyzed to indole-3-acetic acid (IAA) by OsNIT1, the activity of which was enhanced 3- to 4-fold by OsNIT2 and in excess of 5- to 8-fold by OsNAR2.1. Knockout (KO) of OsNAR2.1 was accompanied by repressed expression of both OsNIT1 and OsNIT2, whereas KO of OsNIT1 and OsNIT2 in the osnit1 and osnit2 mutant lines did not affect expression of OsNAR2.1 or the root nitrate acquisition rate. osnit1 and osnit2 displayed decreased primary root length and lateral root density. Double KO of OsNAR2.1 and OsNIT2 caused further decreases in lateral root density under nitrate supply. Ammonium supply repressed OsNAR2.1 expression whereas it upregulated OsNIT1 and OsNIT2 expression. Both osnit1 and osnit2 showed root growth hypersensitivity to external ammonium; however, less root growth sensitivity to external IAN, higher expression of three IAA-amido synthetase genes, and a lower rate of 3H-IAA movement toward the roots were observed. Taken together, we conclude that the interaction of OsNIT1 and OsNIT2 activated by OsNAR2.1 and nitrogen supply is essential for maintaining root growth possibly via altering the IAA ratio of free to conjugate forms and facilitating its transportation.




t2

The Calcium Sensor CBL2 and Its Interacting Kinase CIPK6 Are Involved in Plant Sugar Homeostasis via Interacting with Tonoplast Sugar Transporter TST2

Calcineurin B-like protein (CBL) and CBL-interacting protein kinase (CIPK)-mediated calcium signaling has been widely reported to function in plant development and various stress responses, particularly in ion homeostasis. Sugars are the most important primary metabolites, and thus sugar homeostasis requires precise regulation. Here, we describe a CBL2-CIPK6-Tonoplast-Localized Sugar Transporter2 (TST2) molecular module in cotton (Gossypium hirsutum) that regulates plant sugar homeostasis, in particular Glc homeostasis. GhCIPK6 is recruited to the tonoplast by GhCBL2 and interacts with the tonoplast-localized sugar transporter GhTST2. Overexpression of either GhCBL2, GhCIPK6, or GhTST2 was sufficient to promote sugar accumulation in transgenic cotton, whereas RNAi-mediated knockdown of GhCIPK6 expression or CRISPR-Cas9-mediated knockout of GhTST2 resulted in significantly decreased Glc content. Moreover, mutation of GhCBL2 or GhTST2 in GhCIPK6-overexpressing cotton reinstated sugar contents comparable to wild-type plants. Heterologous expression of GhCIPK6 in Arabidopsis (Arabidopsis thaliana) also promoted Glc accumulation, whereas mutation of AtTST1/2 in GhCIPK6-overexpressing Arabidopsis similarly reinstated wild-type sugar contents, thus indicating conservation of CBL2-CIPK6-TST2-mediated sugar homeostasis among different plant species. Our characterization of the molecular players behind plant sugar homeostasis may be exploited to improve sugar contents and abiotic stress resistance in plants.




t2

CBL2-CIPK6-TST2-Mediated Regulation of Sugar Homeostasis




t2

Serotonin (5-HT) Shapes the Macrophage Gene Profile through the 5-HT2B-Dependent Activation of the Aryl Hydrocarbon Receptor [INNATE IMMUNITY AND INFLAMMATION]

Key Points

  • 5-HT2B agonists stimulate AhR transcriptional activation in human macrophages.

  • Serotonin-induced expression of AhR target genes is 5-HT2B dependent in macrophages.




    t2

    Correction to "Coordinated Regulation of UGT2B15 Expression by Long Noncoding RNA LINC00574 and hsa-miR-129-5p in HepaRG Cells" [Errata]




    t2

    Increase in Endogenous Glucose Production With SGLT2 Inhibition Is Unchanged by Renal Denervation and Correlates Strongly With the Increase in Urinary Glucose Excretion

    OBJECTIVE

    Sodium–glucose cotransporter 2 (SGLT2) inhibition causes an increase in endogenous glucose production (EGP). However, the mechanisms are unclear. We studied the effect of SGLT2 inhibitors on EGP in subjects with type 2 diabetes (T2D) and without diabetes (non-DM) in kidney transplant recipients with renal denervation.

    RESEARCH DESIGN AND METHODS

    Fourteen subjects who received a renal transplant (six with T2D [A1C 7.2 ± 0.1%] and eight non-DM [A1C 5.6 ± 0.1%) underwent measurement of EGP with [3-3H]glucose infusion following dapagliflozin (DAPA) 10 mg or placebo. Plasma glucose, insulin, C-peptide, glucagon, and titrated glucose-specific activity were measured.

    RESULTS

    Following placebo in T2D, fasting plasma glucose (FPG) (143 ± 14 to 124 ± 10 mg/dL; P = 0.02) and fasting plasma insulin (12 ± 2 to 10 ± 1.1 μU/mL; P < 0.05) decreased; plasma glucagon was unchanged, and EGP declined. After DAPA in T2D, FPG (143 ± 15 to 112 ± 9 mg/dL; P = 0.01) and fasting plasma insulin (14 ± 3 to 11 ± 2 μU/mL; P = 0.02) decreased, and plasma glucagon increased (all P < 0.05 vs. placebo). EGP was unchanged from baseline (2.21 ± 0.19 vs. 1.96 ± 0.14 mg/kg/min) in T2D (P < 0.001 vs. placebo). In non-DM following DAPA, FPG and fasting plasma insulin decreased, and plasma glucagon was unchanged. EGP was unchanged from baseline (1.85 ± 0.10 to 1.78 ± 0.10 mg/kg/min) after DAPA, whereas EGP declined significantly with placebo. When the increase in EGP production following DAPA versus placebo was plotted against the difference in urinary glucose excretion (UGE) for all patients, a strong correlation (r = 0.824; P < 0.001) was observed.

    CONCLUSIONS

    Renal denervation in patients who received a kidney transplant failed to block the DAPA-mediated stimulation of EGP in both individuals with T2D and non-DM subjects. The DAPA-stimulated rise in EGP is strongly related to the increase in UGE, blunting the decline in FPG.




    t2

    Early high plasma ST2, the decoy IL-33 receptor, in children undergoing hematopoietic cell transplantation is associated with the development of post-transplant diabetes mellitus




    t2

    5-formylcytosine and 5-hydroxymethyluracil as surrogate markers of TET2 and SF3B1 mutations in myelodysplastic syndrome, respectively




    t2

    Erratum. WASH Regulates Glucose Homeostasis by Facilitating Glut2 Receptor Recycling in Pancreatic {beta}-Cells. Diabetes 2019;68:377-386




    t2

    Interindividual Heterogeneity of SGLT2 Expression and Function in Human Pancreatic Islets

    Studies implicating sodium–glucose cotransporter 2 (SGLT2) inhibitors in glucagon secretion by pancreatic α-cells reported controversial results. We hypothesized that interindividual heterogeneity in SGLT2 expression and regulation may affect glucagon secretion by human α-cells in response to SGLT2 inhibitors. An unbiased RNA-sequencing analysis of 207 donors revealed an unprecedented level of heterogeneity of SLC5A2 expression. To determine heterogeneity of SGLT2 expression at the protein level, the anti-SGLT2 antibody was first rigorously evaluated for specificity, followed by Western blot and immunofluorescence analysis on islets from 10 and 12 donors, respectively. The results revealed a high interdonor variability of SGLT2 protein expression. Quantitative analysis of 665 human islets showed a significant SGLT2 protein colocalization with glucagon but not with insulin or somatostatin. Moreover, glucagon secretion by islets from 31 donors at low glucose (1 mmol/L) was also heterogeneous and correlated with dapagliflozin-induced glucagon secretion at 6 mmol/L glucose. Intriguingly, islets from three donors did not secrete glucagon in response to either 1 mmol/L glucose or dapagliflozin, indicating a functional impairment of the islets of these donors to glucose sensing and SGLT2 inhibition. Collectively, these data suggest that heterogeneous expression of SGLT2 protein and variability in glucagon secretory responses contribute to interindividual differences in response to SGLT2 inhibitors.




    t2

    The Limited Role of Glucagon for Ketogenesis During Fasting or in Response to SGLT2 Inhibition

    Glucagon is classically described as a counterregulatory hormone that plays an essential role in the protection against hypoglycemia. In addition to its role in the regulation of glucose metabolism, glucagon has been described to promote ketosis in the fasted state. Sodium–glucose cotransporter 2 inhibitors (SGLT2i) are a new class of glucose-lowering drugs that act primarily in the kidney, but some reports have described direct effects of SGLT2i on α-cells to stimulate glucagon secretion. Interestingly, SGLT2 inhibition also results in increased endogenous glucose production and ketone production, features common to glucagon action. Here, we directly test the ketogenic role of glucagon in mice, demonstrating that neither fasting- nor SGLT2i-induced ketosis is altered by interruption of glucagon signaling. Moreover, any effect of glucagon to stimulate ketogenesis is severely limited by its insulinotropic actions. Collectively, our data suggest that fasting-associated ketosis and the ketogenic effects of SGLT2 inhibitors occur almost entirely independent of glucagon.




    t2

    A Variation on the Theme: SGLT2 Inhibition and Glucagon Secretion in Human Islets




    t2

    CT2 Kim Thi

    Nhà ở xã hội CT2 Kim Thi do Công ty CP Địa ốc Kim Thi đầu tư là nhà ở xã hội đầu tiên của tỉnh Nghệ An.




    t2

    Suresh Raina, Irfan Pathan want BCCI to allow Indian players to participate in foreign T20 leagues




    t2

    Fan-free T20 World Cup beyond belief: Allan Border

    The former Australian skipper says he thinks the Twenty20 World Cup in Australia will be postponed if fans aren't allowed to attend matches because of the COVID-19 pandemic.




    t2

    AZ's Farxiga becomes first FDA-approved SGLT2 inhibitor for heart failure with reduced ejection fraction

    The FDA has moved to approve an oral tablet formulation of AstraZeneca’s Farxiga (dapagliflozin) to reduce the risk of cardiovascular death and hospitalisation in adult patients with New York Heart Association’s functional class II-IV heart failure with reduced ejection fraction.