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Molecular Interactions Position Mso1p, a Novel PTB Domain Homologue, in the Interface of the Exocyst Complex and the Exocytic SNARE Machinery in Yeast

机译:分子相互作用将Mso1p,一种新型的PTB域同源物,置于酵母中的囊外复合物与囊外SNARE机械的界面上

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摘要

In this study, we have analyzed the association of the Sec1p interacting protein Mso1p with the membrane fusion machinery in yeast. We show that Mso1p is essential for vesicle fusion during prospore membrane formation. Green fluorescent protein-tagged Mso1p localizes to the sites of exocytosis and at the site of prospore membrane formation. In vivo and in vitro experiments identified a short amino-terminal sequence in Mso1p that mediates its interaction with Sec1p and is needed for vesicle fusion. A point mutation, T47A, within the Sec1p-binding domain abolishes Mso1p functionality in vivo, and mso1T47A mutant cells display specific genetic interactions with sec1 mutants. Mso1p coimmunoprecipitates with Sec1p, Sso1/2p, Snc1/2p, Sec9p, and the exocyst complex subunit Sec15p. In sec4-8 and SEC4I133 mutant cells, association of Mso1p with Sso1/2p, Snc1/2p, and Sec9p is affected, whereas interaction with Sec1p persists. Furthermore, in SEC4I133 cells the dominant negative Sec4I133p coimmunoprecipitates with Mso1p–Sec1p complex. Finally, we identify Mso1p as a homologue of the PTB binding domain of the mammalian Sec1p binding Mint proteins. These results position Mso1p in the interface of the exocyst complex, Sec4p, and the SNARE machinery, and reveal a novel layer of molecular conservation in the exocytosis machinery.
机译:在这项研究中,我们分析了Sec1p相互作用蛋白Mso1p与酵母膜融合机制的关联。我们表明,Mso1p是必需的囊泡融合过程中形成的囊膜。标记有绿色荧光蛋白的Mso1p定位于胞吐作用的位置和孢子膜形成的位置。体内和体外实验确定了Mso1p中一个短的氨基末端序列,该序列介导了它与Sec1p的相互作用,是囊泡融合所必需的。 Sec1p绑定域中的点突变T47A在体内废除了Mso1p功能,而mso1T47A突变细胞显示与sec1突变体的特定遗传相互作用。 Mso1p与Sec1p,Sso1 / 2p,Snc1 / 2p,Sec9p和囊外复合物亚基Sec15p共沉淀。在sec4-8和SEC4I133突变细胞中,Mso1p与Sso1 / 2p,Snc1 / 2p和Sec9p的关联受到影响,而与Sec1p的相互作用仍然存在。此外,在SEC4I133细胞中,显性阴性Sec4I133p与Mso1p–Sec1p复合体共免疫沉淀。最后,我们将Mso1p鉴定为哺乳动物Sec1p结合薄荷蛋白的PTB结合域的同源物。这些结果将Mso1p定位在囊泡复合体,Sec4p和SNARE机器的界面中,并揭示了胞吐机制中新的分子保守层。

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