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首页> 外文期刊>Journal of cell biology >The BOS1 gene encodes an essential 27-kD putative membrane protein that is required for vesicular transport from the ER to the Golgi complex in yeast.
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The BOS1 gene encodes an essential 27-kD putative membrane protein that is required for vesicular transport from the ER to the Golgi complex in yeast.

机译:BOS1基因编码必需的27 kD推定膜蛋白,这是从ER向酵母中的高尔基复合体进行囊泡运输所必需的。

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We recently described the identification of BOS1 (Newman, A., J. Shim, and S. Ferro-Novick. 1990. Mol. Cell. Biol. 10:3405-3414.). BOS1 is a gene that in multiple copy suppresses the growth and secretion defect of bet1 and sec22, two mutants that disrupt transport from the ER to the Golgi complex in yeast. The ability of BOS1 to specifically suppress mutants blocked at a particular stage of the secretory pathway suggested that this gene encodes a protein that functions in this process. The experiments presented in this study support this hypothesis. Specifically, the BOS1 gene was found to be essential for cellular growth. Furthermore, cells depleted of the Bos1 protein fail to transport pro-alpha-factor and carboxypeptidase Y (CPY) to the Golgi apparatus. This defect in export leads to the accumulation of an extensive network of ER and small vesicles. DNA sequence analysis predicts that Bos1 is a 27-kD protein containing a putative membrane-spanning domain. This prediction is supported by differential centrifugation experiments. Thus, Bos1 appears to be a membrane protein that functions in conjunction with Bet1 and Sec22 to facilitate the transport of proteins at a step subsequent to translocation into the ER but before entry into the Golgi apparatus.
机译:我们最近描述了BOS1的鉴定(Newman,A.,J.Shim,和S.Ferro-Novick.1990.Mol.Cell.Biol.10:3405-3414。)。 BOS1是一个基因,可以多重复制抑制bet1和sec22的生长和分泌缺陷,这两个突变体破坏了酵母中从ER到高尔基体的转运。 BOS1特异性抑制在分泌途径的特定阶段受阻的突变体的能力表明,该基因编码一种在此过程中起作用的蛋白质。本研究中提出的实验支持这一假设。具体而言,发现BOS1基因对于细胞生长至关重要。此外,耗尽Bos1蛋白的细胞无法将前α因子和羧肽酶Y(CPY)转运到高尔基体。这种出口缺陷导致大量的内质网和小囊泡的积累。 DNA序列分析预测Bos1是一个27 kD的蛋白质,包含一个假定的跨膜结构域。这种预测得到了差速离心实验的支持。因此,Bos1似乎是一种膜蛋白,与Bet1和Sec22一起起作用,在易位到ER中但进入高尔基体之前的步骤中促进蛋白的运输。

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