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首页> 外文期刊>Molecular Microbiology >Efficient degradation of misfolded mutant Pma1 by endoplasmic reticulum-associated degradation requires Atg19 and the Cvt/autophagy pathway.
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Efficient degradation of misfolded mutant Pma1 by endoplasmic reticulum-associated degradation requires Atg19 and the Cvt/autophagy pathway.

机译:由内质网相关的降解有效折叠错误折叠的突变体Pma1需要Atg19和Cvt /自噬途径。

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摘要

Misfolded proteins are usually arrested in the endoplasmic reticulum (ER) and degraded by the ER-associated degradation (ERAD) machinery. Several mutant alleles of PMA1, the gene coding for the plasma membrane H(+)-ATPase, render misfolded proteins that are retained in the ER and degraded by ERAD. A subset of misfolded PMA1 mutants exhibit a dominant negative effect on yeast growth since, when coexpressed with the wild-type allele, both proteins are retained in the ER. We have used a pma1-D378T dominant negative mutant to identify new genes involved in ERAD. A genetic screen was performed for isolation of multicopy suppressors of a GAL1-pma1-D378T allele. ATG19, a member of the cytoplasm to vacuole targeting (Cvt) pathway, was found to suppress the growth arrest phenotype caused by the expression of pma1-D378T. ATG19 accelerates the degradation of pma1-D378T thus allowing the co-retained wild-type Pma1 to reach the plasma membrane. ATG19 was also able to suppress other dominant lethal PMA1 mutations. The degradation of the mutant ATPase occurs in the proteasome and requires intact both ERAD and Cvt/autophagy pathways. We propose the cooperation of both pathways for an efficient degradation of misfolded Pma1.
机译:折叠错误的蛋白质通常会被捕获在内质网(ER)中,并通过与ER相关的降解(ERAD)机制降解。 PMA1的几个突变等位基因,编码质膜H(+)-ATPase的基因,使错误折叠的蛋白质保留在ER中并被ERAD降解。错误折叠的PMA1突变体的一个子集对酵母菌的生长表现出主要的负面影响,因为当与野生型等位基因共表达时,两种蛋白质都保留在ER中。我们已经使用了pma1-D378T显性负突变体来鉴定参与ERAD的新基因。进行遗传筛选以分离GAL1-pma1-D378T等位基因的多拷贝抑制剂。发现ATG19是液泡靶向(Cvt)途径的胞质成员,可以抑制由pma1-D378T表达引起的生长停滞表型。 ATG19加速pma1-D378T的降解,从而使共保留的野生型Pma1到达质膜。 ATG19还能够抑制其他主要的致死性PMA1突变。突变的ATPase的降解发生在蛋白酶体中,需要完整的ERAD和Cvt /自噬途径。我们提出两种途径的合作,以有效降解错误折叠的Pma1。

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