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The SLP1 gene of Saccharomyces cerevisiae is essential for vacuolar morphogenesis and function.

机译:酿酒酵母的SLP1基因对于液泡形态发生和功能至关重要。

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The SLP1 gene, which is involved in the expression of vacuolar functions in the yeast Saccharomyces cerevisiae (K. Kitamoto, K. Yoshizawa, Y. Ohsumi, and Y. Anraku, J. Bacteriol. 170:2687-2691, 1988), has been cloned from a yeast genomic library by complementation of the slp1-1 mutation. The isolated plasmid has a 7.8-kilobase BamHI-BamHI fragment that is sufficient to complement several characteristic phenotypes of the slp1-1 mutation. The fragment was integrated at the chromosomal SLP1 locus, indicating that it contains an authentic SLP1 gene. By DNA sequencing of the SLP1 gene, an open reading frame of 2,073 base pairs coding for a polypeptide of 691 amino acid residues (Mr, 79,270) was found. Gene disruption of the chromosomal SLP1 did not cause a lethal event. Vacuolar proteins in the delta slp1 mutant are not processed to vacuolar forms but remain in Golgi-modified forms. Carboxypeptidase Y in the delta slp1 mutant is localized mainly to the outsides of the cells. delta slp1 mutant cells have no prominent vacuolar structures but contain numerous vesicles in the cytoplasm, as seen by electron microscopy. Genetic and molecular biological analyses revealed that SLP1 is identical to VPS33, which is required for vacuolar protein sorting as reported by Robinson et al. (J. S. Robinson, D. J. Klionsky, L. M. Banta, and S. D. Emr, Mol. Cell. Biol. 8:4936-4948, 1988). These results indicate that the SLP1 (VPS33) gene is involved in the sorting of vacuolar proteins from the Golgi apparatus and their targeting to the vacuole and that it is required for the morphogenesis of vacuoles and subsequent expression of vacuolar functions.
机译:SLP1基因与酿酒酵母中液泡功能的表达有关(K. Kitamoto,K.Yoshizawa,Y.Osumi,和Y.Anraku,J.Bacteriol.170:2687-2691,1988),具有SLP1基因通过互补slp1-1突变从酵母基因组文库中克隆了cDNA片段。分离的质粒具有7.8碱基对的BamHI-BamHI片段,该片段足以补充slp1-1突变的几种特征表型。该片段整合在染色体SLP1基因座上,表明它含有一个真实的SLP1基因。通过SLP1基因的DNA测序,发现了一个2,073个碱基对的开放阅读框,编码691个氨基酸残基的多肽(Mr,79,270)。染色体SLP1的基因破坏没有引起致命事件。三角洲slp1突变体中的液泡蛋白未加工成液泡形式,但仍保持高尔基修饰形式。 δslp1突变体中的羧肽酶Y主要位于细胞的外部。电子显微镜观察到,δslp1突变细胞没有明显的液泡结构,但在细胞质中包含许多囊泡。遗传和分子生​​物学分析表明,SLP1与VPS33相同,如Robinson等报道的,VLP33是液泡蛋白分选所必需的。 (J.S.鲁宾逊,D.J.Klionsky,L.M.Banta和S.D.Emr,分子细胞生物学,8:4936-4948,1988)。这些结果表明,SLP1(VPS33)基因参与了来自高尔基体的液泡蛋白的分选及其靶向液泡,并且液泡的形态发生和液泡功能的后续表达是必需的。

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