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基于结构的功能分析揭示了SM蛋白Sly1p在内质网逆行转运中的作用。

Structure-based functional analysis reveals a role for the SM protein Sly1p in retrograde transport to the endoplasmic reticulum.

作者信息

Li Yujie, Gallwitz Dieter, Peng Renwang

机构信息

Max Planck Institute for Biophysical Chemistry, Department of Molecular Genetics, 37077 Göttingen, Germany.

出版信息

Mol Biol Cell. 2005 Sep;16(9):3951-62. doi: 10.1091/mbc.e05-02-0114. Epub 2005 Jun 15.

Abstract

Sec1p/Munc18 (SM) proteins are essential for membrane fusion events in eukaryotic cells. Here we describe a systematic, structure-based mutational analysis of the yeast SM protein Sly1p, which was previously shown to function in anterograde endoplasmic reticulum (ER)-to-Golgi and intra-Golgi protein transport. Five new temperature-sensitive (ts) mutants, each carrying a single amino acid substitution in Sly1p, were identified. Unexpectedly, not all of the ts mutants exhibited striking anterograde ER-to-Golgi transport defects. For example, in cells of the novel sly1-5 mutant, transport of newly synthesized lysosomal and secreted proteins was still efficient, but the ER-resident Kar2p/BiP was missorted to the outside of the cell, and two proteins, Sed5p and Rer1p, which normally shuttle between the Golgi and the ER, failed to relocate to the ER. We also discovered that in vivo, Sly1p was associated with a SNARE complex formed on the ER, and that in vitro, the SM protein directly interacted with the ER-localized nonsyntaxin SNAREs Use1p/Slt1p and Sec20p. Furthermore, several conditional mutants defective in Golgi-to-ER transport were synthetically lethal with sly1-5. Together, these results indicate a previously unrecognized function of Sly1p in retrograde transport to the endoplasmic reticulum.

摘要

Sec1p/Munc18(SM)蛋白对于真核细胞中的膜融合事件至关重要。在此,我们描述了对酵母SM蛋白Sly1p进行的基于结构的系统性突变分析,该蛋白先前已被证明在从内质网(ER)到高尔基体的顺向运输以及高尔基体内部的蛋白质运输中发挥作用。我们鉴定出了五个新的温度敏感(ts)突变体,每个突变体的Sly1p中都带有一个单氨基酸替换。出乎意料的是,并非所有的ts突变体都表现出明显的从ER到高尔基体的顺向运输缺陷。例如,在新型sly1 - 5突变体细胞中,新合成的溶酶体蛋白和分泌蛋白的运输仍然高效,但内质网驻留蛋白Kar2p/BiP却被错误分选到了细胞外,并且两种通常在高尔基体和内质网之间穿梭的蛋白Sed5p和Rer1p未能重新定位于内质网。我们还发现,在体内,Sly1p与在内质网上形成的SNARE复合体相关联,并且在体外,该SM蛋白直接与内质网定位的非 syntaxin SNAREs Use1p/Slt1p和Sec20p相互作用。此外,几个在高尔基体到内质网运输中存在缺陷的条件性突变体与sly1 - 5发生合成致死。这些结果共同表明了Sly1p在向内质网的逆行运输中具有先前未被认识到的功能。

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