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1.
Highlights? The peroxiredoxin, Jafrac1, controls primordial germ cell adhesion during gastrulation ? H2O2 treatment of Drosophila embryos reduces DE-cadherin and β-catenin levels ? Increasing DE-cadherin levels is sufficient to rescue the Jafrac1 phenotype ? Jafrac1 stabilizes the level of adherens junction components in Drosophila embryos  相似文献   

2.
Highlights? Tpx1, Pap1, and Mxr1 are all substrates for S. pombe thioredoxin Trx1 ? In H2O2-treated cells, Tpx1 competitively inhibits reduction of Pap1 and Mxr1 ? H2O2-induced hyperoxidation of Tpx1 allows Trx1 to reduce other oxidized proteins ? Inhibition of Tpx1 by H2O2 is essential for Trx1-mediated repair and cell survival  相似文献   

3.
Highlights? The structure of Mtb LdtMt2 shows the binding of a peptidoglycan fragment ? The structure of the complex maps the interaction between acyl donor and enzyme ? Ldts show a conserved C-terminal ykuD domain with a divergent N-terminal domain ? Based on the structure of this complex, a reaction mechanism is proposed  相似文献   

4.
Highlights? Bacteriophytochrome structure containing photosensory and output transducing domain ? RpBphP1 binds to the cognate repressor RpPpsR2 on illumination with far-red light ? HOS domain is distantly related to Dhp and is essential for binding to the repressor ? Light-induced protomer swapping mechanism between dimers  相似文献   

5.
Highlights? Mincle and Dectin-2 cooperatively recognize Malassezia through distinct ligands ? The Mincle ligands in Malassezia are glucosyl- and mannosylglycolipids ? The Dectin-2 ligand in Malassezia is an O-linked mannobiose-rich glycoprotein ? Cytokine response to the respective ligands was impaired in Mincle?/? and Dectin-2?/? DCs  相似文献   

6.
Highlights? Glucose and O2 signal through Cu/Zn SOD1 to repress respiration ? SOD1 binds to and prevents turnover of a casein kinase CK1γ for respiration control ? Superoxide from aerobic glucose metabolism feeds the SOD1 reaction to stabilize CK1γ ? Both human and yeast CK1γ stability are regulated by SOD1  相似文献   

7.
Highlights? Tmem64-deficient mice show increased bone volume ? Tmem64 deficiency reduces [Ca2+]i oscillation in response to RANKL stimulation ? Tmem64 interacts with SERCA2 ? Tmem64 positively regulates osteoclast formation via SERCA2/Ca2+ signaling  相似文献   

8.
Highlights? DAD2 gene, identified by transposon tagging, encodes an α/β hydrolase fold protein ? DAD2 acts in the shoot; mutants are insensitive to strigolactones ? DAD2 crystal structure shows an internal cavity capable of binding strigolactones ? DAD2 can hydrolyze the strigolactone GR24  相似文献   

9.
Highlights? Regulation of cyclic di-GMP biosynthesis in Moorella thermoacetica ? Stressosome signal transduction and resetting ? X-ray crystal structure of type 2C phosphatase MtX ? X-ray crystal structures of phosphorylated MtS and the N-terminal domain of MtR  相似文献   

10.
Highlights? Crystal structure of the ATPase domain of DnaB from Helicobacter pylori ? MALLS analysis shows that HpDnaB forms dodecamers ? EM reconstruction shows that HpDnaB forms head-to-head double hexamers  相似文献   

11.
Chiang WC  Ching TT  Lee HC  Mousigian C  Hsu AL 《Cell》2012,148(1-2):322-334
Highlights? C. elegans DAF-2 insulin-like signaling negatively regulates HSF-1 activity ? DDL-1 and DDL-2 are negative regulators of HSF-1 ? Formation of a complex containing DDL-1/2 and HSF-1 inhibits HSF-1 activity ? DAF-2 signaling promotes DHIC formation by inhibiting DDL-1 phosphorylation  相似文献   

12.
Highlights? Wnt2 is required for atrial and inflow tract morphogenesis ? Wnt2 regulates expansion of secondary heart field progenitors ? Defects in Wnt2?/? mutants can be rescued using Wnt signaling agonists ? Wnt2 cooperates with Gata6 to regulate cardiac inflow tract development  相似文献   

13.
Highlights? Mtb ESX-5-associated and -nonassociated PE/PPE proteins are highly immunogenic ? ESX-5 core component eccD5 modulates the mycobacterial antigenic repertoire ? ESX-5 PE/PPE deleted Δppe25-pe19 Mtb strain is avirulent, yet strongly immunogenic ? Δppe25-pe19 strain protects mice against Mtb infection and represents a vaccine candidate  相似文献   

14.
Highlights? Diminished PTB expression is sufficient to trans-differentiate fibroblasts to neurons ? PTB plays a key role in a regulatory loop to suppress neuronal-specific genes ? PTB regulates gene expression at both the splicing and RNA stability levels ? PTB modulates microRNA targeting by competition or switching RNA structure  相似文献   

15.
Highlights? The Schistosoma mansoni peroxiredoxin I (SmPrxI) is a moonlighting protein ? SmPrxI switches from LMW peroxidase to HMW chaperone due to chemical stressors ? The three-dimensional structures of both LMW and HMW SmPrxI have been solved ? SmPrxI HMW is the structure of a Prx chaperone  相似文献   

16.
Highlights? ASH2L WH motif is important for trans-regulation of H3 K4 methylation by H2Bub ? Ub stimulates MLL activity in trans, in contrast to DOT1L regulation by H2Bub ? H2Bub enhances MLL, but not MLL3, methyltransferase activity ? H2Aub directly represses MLL methyltransferase activity  相似文献   

17.
Highlights? During cytokinesis, neighboring cells accumulate MyoII at the edges of the furrow ? MyoII nonautonomously sets the initial geometry of the daughter cell interface ? Neighboring membranes impede adherens junction (AJ) formation until a midbody forms ? Arp2/3-dependent actin accumulation in the dividing cell maintains AJ geometry  相似文献   

18.
Highlights? We determine the crystal structure of mouse NPP1 ? We elucidate the mechanism of NPP1 dimer formation and secretion ? The structure explains the dramatic functional differences between NPP1 and NPP2 ? The structure allows defining the impact of pathogenic mutations in human NPP1  相似文献   

19.
Highlights? hiPSC-derived neurons with LRRK2 G2019S exhibit Parkinsonian neurodegeneration ? Genetic correction of the LRRK2 mutation rescued neurodegenerative phenotypes ? Comparative analysis links LRRK2 G2019S, gene dysregulation, and ERK activation ? ERK-dependent gene dysregulation by LRRK2 G2019S contributes to neurodegeneration  相似文献   

20.
Highlights? E. histolytica expresses a convergently evolved RGS-RhoGEF protein ? EhRGS-RhoGEF possesses a conventional nine-helix RGS domain ? Activated EhRGS-RhoGEF induces S2 cell spreading through Rac1/2 ? EhRGS-RhoGEF modulates amoebic migration and host cell killing  相似文献   

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