首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >RAM2 an essential gene of yeast and RAM1 encode the two polypeptide components of the farnesyltransferase that prenylates a-factor and Ras proteins.
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RAM2 an essential gene of yeast and RAM1 encode the two polypeptide components of the farnesyltransferase that prenylates a-factor and Ras proteins.

机译:RAM2(酵母的必需基因)和RAM1编码法尼基转移酶的两个多肽成分可异戊二烯化α因子和Ras蛋白。

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摘要

In the yeast Saccharomyces cerevisiae, mutations in either of two unlinked genes, RAM1 or RAM2, abolish the farnesyltransferase activity responsible for prenylation of Ras proteins and the a-factor mating pheromone. Here we report that the function of RAM1 and RAM2 genes is required for the membrane localization of Ras proteins and a-factor. The RAM2 gene was sequenced and can encode a 38-kDa protein. We examined the functional interaction of RAM2 and RAM1 by expressing the genes in Escherichia coli. Extracts derived from an E. coli strain that coexpressed RAM1 and RAM2 efficiently farnesylated a-factor peptide and Ras protein substrates. In contrast, extracts derived from E. coli strains that expressed either RAM gene alone were devoid of activity; however, when the latter extracts were mixed, protein farnesyltransferase activity was reconstituted. These results indicate that the yeast farnesyl-protein transferase is comprised of Ram1 and Ram2 polypeptides. Although Ram1 is a component of the enzyme, disruption of the RAM1 gene in yeast was not lethal, indicating that the Ram1-Ram2 farnesyltransferase is not essential for viability. In contrast, disruption of RAM2 was lethal, suggesting that Ram2 has an essential function in addition to its role with Ram1 in protein farnesylation.
机译:在酵母酿酒酵母中,两个未链接的基因RAM1或RAM2中的任一突变都消除了负责Ras蛋白和a因子交配信息素异戊二烯化的法尼基转移酶活性。在这里我们报告RAM1和RAM2基因的功能是Ras蛋白和α因子的膜定位所必需的。已对RAM2基因进行了测序,可以编码38 kDa的蛋白质。我们通过在大肠杆菌中表达基因检查了RAM2和RAM1的功能相互作用。共表达RAM1和RAM2的大肠杆菌菌株提取物有效地法尼基化α因子肽和Ras蛋白底物。相反,仅表达RAM基因之一的大肠杆菌菌株提取物则没有活性。然而,当混合后一种提取物时,蛋白质法呢基转移酶的活性被重建。这些结果表明酵母法呢基蛋白转移酶由Ram1和Ram2多肽组成。尽管Ram1是酶的成分,但破坏酵母中RAM1基因并不是致命的,这表明Ram1-Ram2法呢基转移酶对于生存力不是必需的。相比之下,RAM2的破坏是致命的,这表明Ram2除了与Ram1在蛋白质法呢基化中的作用外,还具有重要功能。

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