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首页> 外文期刊>Developmental cell >The CORVET tethering complex interacts with the yeast Rab5 homolog Vps21 and is involved in endo-lysosomal biogenesis.
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The CORVET tethering complex interacts with the yeast Rab5 homolog Vps21 and is involved in endo-lysosomal biogenesis.

机译:CORVET束缚复合物与酵母Rab5同源Vps21相互作用,并参与内溶酶体生物发生。

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摘要

The dynamic equilibrium between vesicle fission and fusion at Golgi, endosome, and vacuole/lysosome is critical for the maintenance of organelle identity. It depends, among others, on Rab GTPases and tethering factors, whose function and regulation are still unclear. We now show that transport among Golgi, endosome, and vacuole is controlled by two homologous tethering complexes, the previously identified HOPS complex at the vacuole and a novel endosomal tethering (CORVET) complex, which interacts with the Rab GTPase Vps21. Both complexes share the four class C Vps proteins: Vps11, Vps16, Vps18, and Vps33. The HOPS complex, in addition, contains Vps41/Vam2 and Vam6, whereas the CORVET complex has the Vps41 homolog Vps8 and the (h)Vam6 homolog Vps3. Strikingly, the CORVET and HOPS complexes can interconvert; we identify two additional intermediate complexes, both consisting of the class C core bound to Vam6-Vps8 or Vps3-Vps41. Our data suggest that modular assembled tethering complexes define organelle biogenesis in the endocytic pathway.
机译:高尔基体,内体和液泡/溶酶体在囊泡裂变与融合之间的动态平衡对于维持细胞器的身份至关重要。除其他外,这取决于Rab GTP酶和栓系因子,其功能和调节尚不清楚。我们现在显示,高尔基体,内体和液泡之间的运输受两个同源系留复合物控制,先前鉴定的液泡中的HOPS复合物和与Rab GTPase Vps21相互作用的新型内体束缚(CORVET)复合物。两种复合物都共享四种C类Vps蛋白:Vps11,Vps16,Vps18和Vps33。此外,HOPS复合物包含Vps41 / Vam2和Vam6,而CORVET复合物具有Vps41同源物Vps8和(h)Vam6同源物Vps3。令人惊讶的是,CORVET和HOPS复合物可以相互转换。我们确定了另外两个中间复合物,它们都由与Vam6-Vps8或Vps3-Vps41结合的C类核心组成。我们的数据表明,模块化组装的束缚复合物定义了内吞途径中的细胞器生物发生。

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