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首页> 外文期刊>Molecular and Cellular Biology >PEP4 gene of Saccharomyces cerevisiae encodes proteinase A, a vacuolar enzyme required for processing of vacuolar precursors.
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PEP4 gene of Saccharomyces cerevisiae encodes proteinase A, a vacuolar enzyme required for processing of vacuolar precursors.

机译:酿酒酵母的PEP4基因编码蛋白酶A,是加工液泡前体所需的液泡酶。

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The proteinase A structural gene of Saccharomyces cerevisiae was cloned by using an immunological screening procedure that allows detection of yeast cells which are aberrantly secreting vacuolar proteins (J. H. Rothman, C. P. Hunter, L. A. Valls, and T. H. Stevens, Proc. Natl. Acad. Sci. USA, 83:3248-3252, 1986). A second cloned gene was obtained on a multicopy plasmid by complementation of a pep4-3 mutation. The nucleotide sequences of these two genes were determined independently and were found to be identical. The predicted amino acid sequence of the cloned gene suggests that proteinase A is synthesized as a 405-amino-acid precursor which is proteolytically converted to the 329-amino-acid mature enzyme. Proteinase A shows substantial homology to mammalian aspartyl proteases, such as pepsin, renin, and cathepsin D. The similarities may reflect not only analogous functions but also similar processing and intracellular targeting mechanisms for the two proteins. The cloned proteinase A structural gene, even when it is carried on a single-copy plasmid, complements the deficiency in several vacuolar hydrolase activities that is observed in a pep4 mutant. A strain carrying a deletion in the genomic copy of the gene fails to complement a pep4 mutant of the opposite mating type. Genetic linkage data demonstrate that integrated copies of the cloned proteinase A structural gene map to the PEP4 locus. Thus, the PEP4 gene encodes a vacuolar aspartyl protease, proteinase A, that is required for the in vivo processing of a number of vacuolar zymogens.
机译:通过使用免疫学筛选方法克隆酿酒酵母的蛋白酶A结构基因,该方法可以检测异常分泌液泡蛋白的酵母细胞(JH Rothman,CP Hunter,LA Valls和TH Stevens,Proc.Natl.Acad.Sci。美国,83:3248-3252,1986)。通过互补pep4-3突变在多拷贝质粒上获得了第二个克隆的基因。这两个基因的核苷酸序列是独立确定的,并且发现是相同的。克隆基因的预测氨基酸序列表明,蛋白酶A是作为405个氨基酸的前体合成的,其被蛋白水解为329个氨基酸的成熟酶。蛋白酶A与哺乳动物天冬氨酰蛋白酶(如胃蛋白酶,肾素和组织蛋白酶D)显示出基本的同源性。相似性不仅可以反映两种蛋白的相似功能,还可以反映相似的加工和细胞内靶向机制。即使在单拷贝质粒上携带克隆的蛋白酶A结构基因,也可以弥补在pep4突变体中观察到的几种液泡水解酶活性的缺陷。在基因的基因组拷贝中带有缺失的菌株不能补充相反交配类型的pep4突变体。遗传连锁数据表明,克隆的蛋白酶A结构基因的整合拷贝定位于PEP4基因座。因此,PEP4基因编码液泡天冬氨酰蛋白酶,蛋白酶A,这是许多液泡酶原的体内加工所必需的。

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