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Sec1/Munc18 protein Vps33 binds to SNARE domains and the quaternary SNARE complex

机译:Sec1 / Munc18蛋白Vps33结合SNARE域和第四纪SNARE复合体

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Soluble N-ethylmaleimide-sensitive factor attachment protein receptor (SNARE) proteins catalyze membrane fusion events in the secretory and endolysosomal systems, and all SNARE-mediated fusion processes require cofactors of the Sec1/Munc18 (SM) family. Vps33 is an SM protein and subunit of the Vps-C complexes HOPS (homotypic fusion and protein sorting) and CORVET (class C core vacuole/endosome tethering), which are central regulators of endocytic traffic. Here we present biochemical studies of interactions between Saccharomyces cerevisiae vacuolar SNAREs and the HOPS holocomplex or Vps33 alone. HOPS binds the N-terminal Habc domain of the Qa-family SNARE Vam3, but Vps33 is not required for this interaction. Instead, Vps33 binds the SNARE domains of Vam3, Vam7, and Nyv1. Vps33 directly binds vacuolar quaternary SNARE complexes, and the affinity of Vps33 for SNARE complexes is greater than for individual SNAREs. Through targeted mutational analyses, we identify missense mutations of Vps33 that produce a novel set of defects, including cargo missorting and the loss of Vps33-HOPS association. Together these data suggest a working model for membrane docking: HOPS associates with N-terminal domains of Vam3 and Vam7 through Vps33-independent interactions, which are followed by binding of Vps33, the HOPS SM protein, to SNARE domains and finally to the quaternary SNARE complex. Our results also strengthen the hypothesis that SNARE complex binding is a core attribute of SM protein function.
机译:可溶性N-乙基马来酰亚胺敏感因子附着蛋白受体(SNARE)蛋白催化分泌和溶酶体系统中的膜融合事件,并且所有SNARE介导的融合过程都需要Sec1 / Munc18(SM)家族的辅因子。 Vps33是SM蛋白和Vps-C复合物HOPS(同型融合和蛋白分选)和CORVET(C类核心液泡/内体束缚)的亚基,它们是内吞运输的主要调节剂。在这里,我们介绍了酿酒酵母液泡SNARE和HOPS全息复合体或单独的Vps33之间相互作用的生化研究。 HOPS绑定Qa家族SNARE Vam3的N末端Habc结构域,但此交互不需要Vps33。而是,Vps33绑定Vam3,Vam7和Nyv1的SNARE域。 Vps33直接结合液泡第四季SNARE复合物,并且Vps33对SNARE复合物的亲和力大于单个SNARE的亲和力。通过针对性的突变分析,我们确定了Vps33的错义突变,该错义突变会产生一组新的缺陷,包括货物错位和Vps33-HOPS关联的丧失。这些数据共同为膜对接提供了一个工作模型:HOPS通过独立于Vps33的相互作用与Vam3和Vam7的N末端域缔合,随后是HOPS SM蛋白Vps33与SNARE域结合,最后与四级SNARE结合。复杂。我们的研究结果也强化了假说,即SNARE复合物结合是SM蛋白功能的核心属性。

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