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从酵母中分离并鉴定SYS基因,即运输GTP酶Ypt6p功能缺失的多拷贝抑制子。

Isolation and characterization of SYS genes from yeast, multicopy suppressors of the functional loss of the transport GTPase Ypt6p.

作者信息

Tsukada M, Gallwitz D

机构信息

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

出版信息

J Cell Sci. 1996 Oct;109 ( Pt 10):2471-81. doi: 10.1242/jcs.109.10.2471.

Abstract

In Saccharomyces cerevisiae, the YPT6 gene encodes the homologue of the mammalian Rab6 protein found in the Golgi apparatus. Deletion of YPT6 in yeast produces a phenotype showing temperature-sensitive growth and partial missorting of the vacuolar enzyme, carboxypeptidase Y. To identify proteins that might: (1) interact with Ypt6p; or (2) act in the same pathway, we have isolated four multicopy suppressors, named SYS1, SYS2, SYS3 and SYS5, that can complement the temperature-sensitive growth phenotype of the ypt6 null mutant. On high expression, these genes are also able to partially suppress the missorting of carboxypeptidase Y.SYS2 on a multicopy plasmid suppresses in addition the temperature-sensitive phenotype of sec7-1, a mutant defective in transport between and from the Golgi compartment. Gene disruption of SYS1 and SYS2 did not result in significant growth defects. However, deletion of SYS1 and/or SYS2 in the ypt6 null mutant enhances defects in vacuolar protein sorting and in cell growth. Whereas protein secretion was not significantly affected in these mutants, the processing of alpha-factor precursor by the Kex2 protease was inhibited, suggesting a function of YPT6 and its null mutant suppressors in transport between the late Golgi and a prevacuolar, endosome-like compartment.

摘要

在酿酒酵母中,YPT6基因编码在高尔基体中发现的哺乳动物Rab6蛋白的同源物。酵母中YPT6基因的缺失产生了一种表型,表现为温度敏感型生长以及液泡酶羧肽酶Y的部分分选错误。为了鉴定可能:(1)与Ypt6p相互作用;或(2)在同一途径中起作用的蛋白质,我们分离出了四个多拷贝抑制子,命名为SYS1、SYS2、SYS3和SYS5,它们可以互补ypt6缺失突变体的温度敏感型生长表型。在高表达时,这些基因也能够部分抑制羧肽酶Y的分选错误。携带多拷贝质粒的SYS2还能抑制sec7-1的温度敏感型表型,sec7-1是一种在高尔基体区室之间运输存在缺陷的突变体。SYS1和SYS2的基因破坏并未导致明显的生长缺陷。然而,在ypt6缺失突变体中缺失SYS1和/或SYS2会加剧液泡蛋白分选和细胞生长方面的缺陷。虽然这些突变体中的蛋白质分泌没有受到显著影响,但Kex2蛋白酶对α-因子前体的加工受到抑制,这表明YPT6及其缺失突变体抑制子在高尔基体晚期和液泡前体、内体样区室之间的运输中发挥作用。

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