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Structures of the yeast dynamin-like GTPase Sey1p provide insight into homotypic ER fusion

机译:酵母动力蛋白样GTPase Sey1p的结构提供了对同型ER融合的见解

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摘要

Homotypic membrane fusion of the endoplasmic reticulum is mediated by dynamin-like guanosine triphosphatases (GTPases), which include atlastin (ATL) in metazoans and Sey1p in yeast. In this paper, we determined the crystal structures of the cytosolic domain of Sey1p derived from Candida albicans. The structures reveal a stalk-like, helical bundle domain following the GTPase, which represents a previously unidentified configuration of the dynamin superfamily. This domain is significantly longer than that of ATL and critical for fusion. Sey1p forms a side-by-side dimer in complex with GMP-PNP or GDP/AlF4 but is monomeric with GDP. Surprisingly, Sey1p could mediate fusion without GTP hydrolysis, even though fusion was much more efficient with GTP. Sey1p was able to replace ATL in mammalian cells, and the punctate localization of Sey1p was dependent on its GTPase activity. Despite the common function of fusogenic GTPases, our results reveal unique features of Sey1p.
机译:内质网的同型膜融合是由动力蛋白样鸟苷三磷酸酶(GTPases)介导的,后者包括后生动物中的阿特斯汀(ATL)和酵母中的Sey1p。在本文中,我们确定了来自白色念珠菌的Sey1p胞质域的晶体结构。该结构揭示了遵循GTPase的茎状螺旋束结构域,该结构域代表了以前未确认的动力蛋白超家族构型。该域比ATL的域长得多,对于融合至关重要。 Sey1p与GMP-PNP或GDP / AlF4 -形成并列的二聚体,但与GDP呈单体关系。出人意料的是,即使使用GTP进行融合更有效,Sey1p仍可在不进行GTP水解的情况下介导融合。 Sey1p能够替代哺乳动物细胞中的ATL,并且Sey1p的点状定位取决于其GTPase活性。尽管融合型GTPases具有共同的功能,但我们的结果揭示了Sey1p的独特功能。

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