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在SLY1 - 20抑制中,Rab的需求并未被绕过。

A Rab requirement is not bypassed in SLY1-20 suppression.

作者信息

Ballew Nicole, Liu Yiting, Barlowe Charles

机构信息

Department of Biochemistry, Dartmouth Medical School, Hanover, NH 03755, USA.

出版信息

Mol Biol Cell. 2005 Apr;16(4):1839-49. doi: 10.1091/mbc.e04-08-0725. Epub 2005 Feb 2.

Abstract

The Rab GTPase Ypt1p and the large homodimer Uso1p are both required for tethering endoplasmic reticulum-derived vesicles to early Golgi compartments in yeast. Loss-of-function ypt1 and uso1 mutations are suppressed by SLY1-20, a dominant allele that encodes the Sed5p-associated protein, Sly1p. Here, we investigate the mechanism of SLY1-20 suppression. In wild-type strains, Ypt1p can be coimmunoprecipitated with Uso1p; however, in a ypt1Delta/SLY1-20 strain, which lacks this complex, membrane binding of Uso1p was reduced. In spite of Ypt1p depletion, Uso1p-dependent vesicle tethering was not bypassed under the ypt1Delta/SLY1-20 condition. Moreover, tethering and fusion assays with ypt1Delta/SLY1-20 membranes remained sensitive to Rab GDP dissociation inhibitor. These results indicate that an alternative Rab protein satisfies the Ypt1p requirement in Uso1p-dependent tethering when SLY1-20 is expressed. Further genetic and biochemical tests revealed that a related Rab protein, Ypt6, might substitute for Ypt1p in ypt1Delta/SLY1-20 cells. Additional experimentation to address the mechanism of SLY1-20 suppression in a cog2Delta [sec35Delta] strain indicated that the Cog2p subunit of the conserved oligomeric Golgi complex is either functionally redundant or is not directly required for anterograde transport to the Golgi complex.

摘要

Rab GTP酶Ypt1p和大型同型二聚体Uso1p都是酵母中将内质网衍生的囊泡拴系到早期高尔基体区室所必需的。功能缺失的ypt1和uso1突变被SLY1 - 20抑制,SLY1 - 20是一个显性等位基因,编码与Sed5p相关的蛋白质Sly1p。在此,我们研究SLY1 - 20抑制的机制。在野生型菌株中,Ypt1p可以与Uso1p进行共免疫沉淀;然而,在缺乏这种复合物的ypt1Δ/SLY1 - 20菌株中,Uso1p的膜结合减少。尽管Ypt1p缺失,但在ypt1Δ/SLY1 - 20条件下,Uso1p依赖的囊泡拴系并未被绕过。此外,用ypt1Δ/SLY1 - 20膜进行的拴系和融合试验对Rab GDP解离抑制剂仍然敏感。这些结果表明,当表达SLY1 - 20时,一种替代的Rab蛋白满足了Uso1p依赖拴系中对Ypt1p的需求。进一步的遗传和生化测试表明,一种相关的Rab蛋白Ypt6可能在ypt1Δ/SLY细胞中替代Ypt1p。在cog2Δ[sec35Δ]菌株中进行的关于SLY1 - 20抑制机制的额外实验表明,保守寡聚高尔基体复合物的Cog2p亚基在功能上要么是冗余的,要么对于向高尔基体复合物的顺向转运不是直接必需的。

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