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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Characterization of an Allele-Nonspecific Intragenic Suppressor in the Yeast Plasma Membrane H+-ATPase Gene (PMA1)
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Characterization of an Allele-Nonspecific Intragenic Suppressor in the Yeast Plasma Membrane H+-ATPase Gene (PMA1)

机译:酵母血浆膜H + -ATPase基因(PMA1)中的等位基因非特异性内源抑制子的表征

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摘要

We have analyzed the ability of A165V, V169I/D170N , and P536L mutations to suppress pma1 dominant lethal alleles and found that the P536L mutation is able to suppress the dominant lethality of the pma1-R271T , - D378N , - D378E , and - K474R mutant alleles. Genetic and biochemical analyses of site-directed mutants at Pro-536 suggest that this amino acid may not be essential for function but is important for biogenesis of the ATPase. Proteins encoded by dominant lethal pma1 alleles are retained in the endoplasmic reticulum, thus interfering with transport of wild-type Pma1. Immunofluorescence studies of yeast conditionally expressing revertant alleles show that the mutant enzymes are correctly located at the plasma membrane and do not disturb targeting of the wild-type enzyme. We propose that changes in Pro-536 may influence the folding of the protein encoded by a dominant negative allele so that it is no longer recognized and retained as a misfolded protein by the endoplasmic reticulum.
机译:我们分析了A165V,V169I / D170N和P536L突变抑制pma1显性致死等位基因的能力,发现P536L突变能够抑制pma1-R271T,-D378N,-D378E和-K474R突变体的显性杀伤力。等位基因。对Pro-536的定点突变体的遗传和生化分析表明,该氨基酸可能不是功能必需的,但对于ATPase的生物发生很重要。由主要致死性pma1等位基因编码的蛋白质保留在内质网中,从而干扰了野生型Pma1的运输。酵母中有条件表达回复等位基因的免疫荧光研究表明,突变酶正确定位在质膜上,不会干扰野生型酶的靶向。我们建议Pro-536中的变化可能会影响由显性负等位基因编码的蛋白质的折叠,因此它不再被内质网识别并保留为错误折叠的蛋白质。

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