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来自酿酒酵母的潮霉素B抗性pma1突变体的缺陷型H(+)-ATP酶

Defective H(+)-ATPase of hygromycin B-resistant pma1 mutants fromSaccharomyces cerevisiae.

作者信息

Perlin D S, Harris S L, Seto-Young D, Haber J E

机构信息

Department of Biochemistry, Public Health Research Institute, New York, New York 10016.

出版信息

J Biol Chem. 1989 Dec 25;264(36):21857-64.

PMID:2532214
Abstract

Mutations in the plasma membrane H(+)-ATPase gene (PMA1) of Saccharomyces cerevisiae that confer growth resistance to hygromycin B have been shown recently to cause a marked depolarization of whole cell membrane potential (Perlin, D. S., Brown, C. L., and Haber, J. E. (1988) J. Biol. Chem. 263, 18118-18122). In this report, the biochemical and genetic properties of H+-ATPases from four prominent hygromycin B-resistant pma1 mutants, pma1-105, pma1-114, pma1-147, and pma1-155, are described. Single base pair changes were identified in pma1-105, pma1-114, and pma1-147 that resulted in amino acid substitutions of Ser-368----Phe, Gly-158----Asp, Pro-640----Leu, respectively. An A----G transition mutation at -39 in the 5'-untranslated region of the mRNA of pma1-155 was also found. This mutation creates an out-of-Frame upstream AUG initiation codon that apparently reduces normal translation of PMA1. DNA sequence analysis of PMA1 from strain Y55 identified 9 base pair substitutions that resulted in 6 amino acid changes in nonconserved regions when compared to the published sequence for strain S288C. Plasma membranes of three of the four pma1 mutants contained normal amounts of H(+)-ATPase; membranes from pma1-155 contained enzyme at 62% of the wild-type level. The kinetics of ATP hydrolysis were most strongly altered for enzymes from pma1-105 and pma1-147 which showed changes in both Km and Vmax. A striking pH dependence for these parameters was found for enzyme from pma1-105 which resulted in a precipitous decline in Km and Vmax below pH 6.5. ATP hydrolysis by enzymes from pma1-105 and pma1-147 was insensitive to inhibition by vanadate. These enzymes, in contrast to wild-type and vanadate-sensitive mutant enzymes, were poorly protected from trypsin-induced inactivation by MgATP and vanadate or Pi alone. These results are pertinent to the mechanism of vanadate-induced enzyme inhibition and suggest that Ser-368 and Pro-640 influence the affinity of the phosphate-binding site for Pi. All mutant enzymes catalyzed ATP-induced pH gradient formation following purification and reconstitution into liposomes. Finally, these results further demonstrate the usefulness of hygromycin B as a generalized screening tool for isolating diverse plasma membrane ATPase mutants.

摘要

最近已表明,酿酒酵母质膜H⁺-ATP酶基因(PMA1)中的突变赋予对潮霉素B的生长抗性,会导致全细胞膜电位明显去极化(珀林,D.S.,布朗,C.L.,和哈伯,J.E.(1988)《生物化学杂志》263,18118 - 18122)。在本报告中,描述了来自四个显著的抗潮霉素B的pma1突变体pma1 - 105、pma1 - 114、pma1 - 147和pma1 - 155的H⁺-ATP酶的生化和遗传特性。在pma1 - 105、pma1 - 114和pma1 - 147中鉴定出单碱基对变化,分别导致Ser - 368→Phe、Gly - 158→Asp、Pro - 640→Leu的氨基酸替换。还发现在pma1 - 155的mRNA的5' - 非翻译区 - 39处有一个A→G转换突变。该突变产生一个移码上游AUG起始密码子,显然降低了PMA1的正常翻译。与已发表的S288C菌株序列相比,对Y55菌株的PMA1进行DNA序列分析鉴定出9个碱基对替换,导致非保守区域有6个氨基酸变化。四个pma1突变体中的三个的质膜含有正常量的H⁺-ATP酶;pma1 - 155的膜所含酶为野生型水平的62%。对于来自pma1 - 105和pma1 - 147的酶,ATP水解动力学变化最为强烈,其Km和Vmax均有变化。发现来自pma1 - 105的酶对这些参数有显著的pH依赖性,导致在pH 6.5以下Km和Vmax急剧下降。来自pma1 - 105和pma1 - 147的酶的ATP水解对钒酸盐抑制不敏感。与野生型和对钒酸盐敏感的突变体酶相比,这些酶单独受MgATP和钒酸盐或Pi保护而免受胰蛋白酶诱导的失活作用较差。这些结果与钒酸盐诱导的酶抑制机制相关,并表明Ser - 368和Pro - 640影响磷酸结合位点对Pi的亲和力。所有突变体酶在纯化并重新组装到脂质体后都催化ATP诱导的pH梯度形成。最后,这些结果进一步证明了潮霉素B作为分离各种质膜ATP酶突变体的通用筛选工具的有用性。

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