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1.
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   

2.
Highlights? GATA23 is involved in lateral root founder cell specification ? A coordinated migration of pericycle nuclei precedes the first asymmetric division ? An Aux/IAA28-dependent auxin signaling cascade controls GATA23 expression  相似文献   

3.
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   

4.
Highlights? Snx3 is highly expressed in vertebrate hematopoietic tissues ? Silencing of Snx3 results in anemia and hemoglobin defects in vertebrates ? Snx3 and Vps35 physically interact with Tfrc ? Snx3 is required for endosomal recycling of Tf-Tfrc complex  相似文献   

5.
Highlights? VLRBs use their C-terminal LRRs and the LRRCT-loop to interact with antigen ? Sequence-related VLRBs exhibit differential recognition of their BclA epitopes ? VLR4 binds a conserved protein epitope, yet is specific for B. anthracis spores  相似文献   

6.
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   

7.
Highlights? Trachea-derived Dpp/Bmp is required for midgut homeostasis ? Dpp expressed in tracheal cells reach intestinal cells through visceral muscles ? Dpp signaling is activated in enterocytes (ECs) in the Drosophila adult midgut ? Dpp signaling stabilizes ECs to restrict intestinal stem cell proliferation  相似文献   

8.
Klf15 orchestrates circadian nitrogen homeostasis   总被引:1,自引:0,他引:1  
Highlights? Nitrogen homeostasis exhibits circadian rhythmicity in mammals ? Klf 15 regulates rhythmic amino acid utilization and ammonia detoxification ? Krüppel-like factor 15 is regulated by the circadian clock ? Feeding is a major external cue regulating Klf15 rhythmicity and nitrogen homeostasis  相似文献   

9.
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   

10.
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   

11.
Highlights? Fast Pol II elongation rate leads to Sen1-dependent termination defects ? Deletion of Rrp6 reveals a noncoding RNA termination window sensitive to Pol II rate ? Slow Pol II rate promotes earlier Sen1 termination events, rescues sen1 defects ? Fast Pol II rate promotes later Sen1 termination events, worsens sen1 defects  相似文献   

12.
Highlights? Irp1 deficiency causes polycythemia and pulmonary hypertension ? Irp1 regulates HIF2α translation and expression of EPO and endothelin 1 ? Irp1 represses erythropoiesis to protect tissue iron levels during iron deficiency ? A low-iron diet worsens polycythemia and causes sudden death in Irp1?/? animals  相似文献   

13.
Highlights? MYC and MET affect glucose and glutamine metabolism differently in the liver ? Tissue context affects the outcome of metabolic reprogramming by MYC ? MYC overexpression sensitizes cells to inhibition of Gls1 glutaminase  相似文献   

14.
Highlights? bantam is required in ecdysone-producing cells to promote body growth ? bantam inhibits ecdysone biosynthesis ? Insulin signaling regulates ecdysone production by repressing bantam activity ? Both the systemic and tissue-autonomous activities of bantam promote organ growth  相似文献   

15.
Highlights? Pax7+ skeletal satellite cells regenerate muscle in their endogenous environment ? Quiescent satellite cells express the RTK inhibitor Spry1 ? Spry1 is needed for satellite cells to return to quiescence after muscle injury ? Deletion of Spry1 in satellite cells depletes the muscle stem cell pool  相似文献   

16.
Highlights? Mucin biopolymers reduce bacterial adhesion to underlying substrates ? Bacterial motility is maintained or increased in the presence of mucins ? Mucins block aggregate formation by motile bacteria ? Immotile Pseudomonas aeruginosa can form alginate and Psl-dependent flocs in mucus  相似文献   

17.
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   

18.
Highlights? Complexes of MetRS from T. brucei with its substrate, intermediate, and inhibitors ? In crystals, substrate-bound MetRS undergoes extensive changes with inhibitor binding ? The inhibitor-bound conformation is surprisingly similar to the ligand-free state ? This indicates inhibitor binding occurs via conformational selection not by induced fit  相似文献   

19.
Highlights? M. tuberculosis FadD13 is a peripheral membrane protein ? Mutagenesis reveals an arginine-rich patch as the site for membrane interaction ? A hydrophobic tunnel extends from the active site to the positively charged patch ? The architecture lets substrates reside partly in the membrane during catalysis  相似文献   

20.
Highlights? In Drosophila epidermis, shavenbaby controls ZPD gene expression ? Apical cell shape remodeling relies on the coordinated action of ZPD genes ? ZPD proteins define sub-regions in the apical extracellular matrix (aECM) ? ZPD products maintain localized apical membrane/aECM interactions.  相似文献   

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