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HOPS 连接复合物的功能需要明确的亚基排列和 rab 相互作用。

Defined subunit arrangement and rab interactions are required for functionality of the HOPS tethering complex.

机构信息

Department of Biology, Biochemistry Section, University of Osnabrück, Barbarastrasse 13, 49076 Osnabrück, Germany.

出版信息

Traffic. 2010 Oct;11(10):1334-46. doi: 10.1111/j.1600-0854.2010.01097.x.

Abstract

Within the endomembrane system of eukaryotic cells, multisubunit tethering complexes together with their corresponding Rab-GTPases coordinate vesicle tethering and fusion. Here, we present evidence that two homologous hexameric tethering complexes, the endosomal CORVET (Class C core vacuole/endosome transport) and the vacuolar HOPS (homotypic vacuole fusion and protein sorting) complex, have similar subunit topologies. Both complexes contain two Rab-binding proteins at one end, and the Sec1/Munc18-like Vps33 at the opposite side, suggesting a model on membrane bridging via Rab-GTP and SNARE binding. In agreement, HOPS activity can be reconstituted using purified subcomplexes containing the Rab and Vps33 module, but requires all six subunits for activity. At the center of HOPS and CORVET, the class C proteins Vps11 and Vps18 connect the two parts, and Vps11 binds both HOPS Vps39 and CORVET Vps3 via the same binding site. As HOPS Vps39 is also found at endosomes, our data thus suggest that these tethering complexes follow defined but distinct assembly pathways, and may undergo transition by simple subunit interchange.

摘要

在内质网系统的真核细胞中,多亚基连接复合物及其相应的 Rab-GTP 酶共同协调囊泡的连接和融合。在这里,我们提供的证据表明,两个同源的六聚体连接复合物,即内体 CORVET(C 类核心液泡/内体运输)和液泡 HOPS(同源液泡融合和蛋白质分选)复合物,具有相似的亚基拓扑结构。这两个复合物在一端都含有两个 Rab 结合蛋白,在另一端都含有 Sec1/Munc18 样 Vps33,这表明了一种通过 Rab-GTP 和 SNARE 结合进行膜桥接的模型。HOPS 活性可以使用含有 Rab 和 Vps33 模块的纯化亚复合物来重建,但需要所有六个亚基才能发挥活性。在 HOPS 和 CORVET 的中心,C 类蛋白 Vps11 和 Vps18 将两部分连接起来,Vps11 通过相同的结合位点结合 HOPS Vps39 和 CORVET Vps3。由于 HOPS Vps39 也存在于内体中,因此我们的数据表明这些连接复合物遵循明确但不同的组装途径,并且可能通过简单的亚基交换发生转变。

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