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Reversible cooperative reactions of yeast vacuole docking

机译:酵母液泡对接的可逆合作反应

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摘要

Homotypic yeast vacuole fusion occurs in three stages: (i) priming reactions, which are independent of vacuole clustering, (ii) docking, in which vacuoles cluster and accumulate fusion proteins and fusion regulatory lipids at a ring-shaped microdomain surrounding the apposed membranes of each docked vacuole, where fusion will occur, and (iii) bilayer fusion/compartment mixing. These stages require vacuolar SNAREs, SNARE-chaperones, GTPases, effector complexes, and chemically minor but functionally important lipids. For each, we have developed specific ligands that block fusion and conditions that reverse each block. Using them, we test whether docking entails a linearly ordered series of catalytic events, marked by sequential acquisition of resistance to inhibitors, or whether docking subreactions are cooperative and/or reversible. We find that each fusion protein and regulatory lipid is needed throughout docking, indicative of a reversible or highly cooperative assembly of the fusion-competent vertex ring. In accord with this cooperativity, vertices enriched in one fusion catalyst are enriched in others. Docked vacuoles finally assemble SNARE complexes, yet still require physiological temperature and lipid rearrangements to complete fusion.
机译:同型酵母空泡融合发生在三个阶段:(i)引发反应,独立于空泡聚类;(ii)对接,其中空泡聚簇并在融合蛋白和融合调节脂质聚集在围绕其的膜周围的环形微区中每个对接的液泡,将发生融合,以及(iii)双层融合/隔室混合。这些阶段需要液泡的SNARE,SNARE-伴侣,GTP酶,效应物复合物和化学上较弱但功能上重要的脂质。对于每种化合物,我们都开发了可阻止融合的特定配体以及可逆转每种嵌段的条件。使用它们,我们测试对接是否需要一系列线性顺序的催化事件(以对抑制剂的抗性的顺序获取为标志),或者对接子反应是否是协同作用和/或可逆的。我们发现在整个对接过程中都需要每种融合蛋白和调节脂质,这表明具有融合能力的顶点环可逆或高度协作。根据这种合作性,富含一种熔融催化剂的顶点也富含其他熔融催化剂。对接的液泡最终组装了SNARE复合物,但仍需要生理温度和脂质重排才能完成融合。

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