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Engineering of the yeast ubiquitin ligase Rsp5: isolation of a new variant that induces constitutive inactivation of the general amino acid permease Gap1

机译:酵母泛素连接酶Rsp5的工程设计:分离一个新变体,该变体诱导一般氨基酸通透酶Gap1的组成型失活

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Rsp5 is an essential ubiquitin-protein ligase in Saccharomyces cerevisiae. We found previously that the Ala401Glu rsp5 mutant is hypersensitive to various stresses that induce protein misfolding, suggesting that Rsp5 is a key enzyme for yeast cell growth under stress conditions. To isolate new Rsp5 variants as suppressors of the A401E mutant, PCR random mutagenesis was used in the rsp5Atp#E gene, and the mutagenized plasmid library was introduced into rsp5Atp#E cells. As a phenotypic suppressor ofrsp5Atp#E cells, we isolated a quadruple variant (Thr357Ala/Glu401Gly/Lys764Glu/Glu767Gly) on a minimal medium containing the toxic proline analogue azetidine-2-carboxylate (AZC). Site-directed mutagenesis experiments showed that the rsp5Tpde"A/K"etE cells were much more tolerant to AZC than the wild-type cells, due to the smaller amounts of intracellular AZC. However, the T357A/K764E variant Rsp5 did not reverse the hypersensitivity of rsp5Atp#E cells to other stresses such as high growth temperature,ethanol, and freezing treatment. Interestingly, immunoblot and localization analyses indicated that the general amino acid permease Gap1, which is involved in AZC uptake, was absent on the plasma membrane and degraded in the vacuole of rsp5Tpde"A/K"etE cells before the addition of ammonium ions. These results suggest that the T357A/K764E variant Rsp5 induces constitutive inactivation of Gap1.
机译:Rsp5是酿酒酵母中必不可少的泛素蛋白连接酶。我们以前发现,Ala401Glu rsp5突变体对诱导蛋白质错误折叠的各种应激高度敏感,这表明Rsp5是在应激条件下酵母细胞生长的关键酶。为了分离新的Rsp5变体作为A401E突变体的抑制剂,在rsp5Atp#E基因中使用了PCR随机诱变,并将诱变的质粒文库引入rsp5Atp#E细胞。作为rsp5Atp#E细胞的表型抑制剂,我们在含有毒性脯氨酸类似物氮杂环丁烷-2-羧酸盐(AZC)的基本培养基上分离了四倍变体(Thr357Ala / Glu401Gly / Lys764Glu / Glu767Gly)。定点诱变实验表明,由于细胞内AZC的量较少,rsp5Tpde“ A / K” etE细胞比野生型细胞对AZC的耐受性高得多。但是,T357A / K764E变体Rsp5并未逆转rsp5Atp#E细胞对其他压力(如高生长温度,乙醇和冷冻处理)的超敏性。有趣的是,免疫印迹和定位分析表明,参与AZC摄取的一般氨基酸通透酶Gap1在质膜上不存在,并且在添加铵离子之前在rsp5Tpde“ A / K” etE细胞的液泡中降解。这些结果表明,T357A / K764E变体Rsp5诱导了Gap1的组成型失活。

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