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首页> 外文期刊>Journal of bacteriology >Isolation of Cold-Sensitive yidC Mutants Provides Insights into the Substrate Profile of the YidC Insertase and the Importance of Transmembrane 3 in YidC Function
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Isolation of Cold-Sensitive yidC Mutants Provides Insights into the Substrate Profile of the YidC Insertase and the Importance of Transmembrane 3 in YidC Function

机译:冷敏感的yidC突变体的分离提供了对YidC插入酶的底物概况和跨膜3在YidC功能中的重要性的见解。

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YidC, a 60-kDa integral membrane protein, plays an important role in membrane protein insertion in bacteria. YidC can function together with the SecYEG machinery or operate independently as a membrane protein insertase. In this paper, we describe two new yidC mutants that lead to a cold-sensitive phenotype in bacterial cell growth. Both alleles impart a cold-sensitive phenotype and result from point mutations localized to the third transmembrane (TM3) segment of YidC, indicating that this region is crucial for YidC function. We found that the yidC(C423R) mutant confers a weak phenotype on membrane protein insertion while a yidC(P431L) mutant leads to a stronger phenotype. In both cases, the affected substrates include the Pf3 coat protein and ATP synthase F1Fo subunit c (FoC), while CyoA (the quinol binding subunit of the cytochrome bo3 quinol oxidase complex) and wild-type procoat are slightly affected or not affected in either cold-sensitive mutant. To determine if the different substrates require various levels of YidC activity for membrane insertion, we performed studies where YidC was depleted using an arabinose-dependent expression system. We found that ?3M-PC-Lep (a construct with three negatively charged residues inserted into the middle of the procoat-Lep [PC-Lep] protein) and Pf3 P2 (a construct with the Lep P2 domain added at the C terminus of Pf3 coat) required the highest amount of YidC and that CyoA-N-P2 (a construct with the amino-terminal part of CyoA fused to the Lep P2 soluble domain) and PC-Lep required the least, while FoC required moderate YidC levels. Although the cold-sensitive mutations can preferentially affect one substrate over another, our results indicate that different substrates require different levels of YidC activity for membrane insertion. Finally, we obtained several intragenic suppressors that overcame the cold sensitivity of the C423R mutation. One pair of mutations suggests an interaction between TM2 and TM3 of YidC. The studies reveal the critical regions of the YidC protein and provide insight into the substrate profile of the YidC insertase.
机译:YidC是一种60 kDa的整合膜蛋白,在细菌的膜蛋白插入中起着重要作用。 YidC可以与SecYEG机制一起运行,也可以作为膜蛋白插入酶独立运行。在本文中,我们描述了两个新的 yidC 突变体,它们导致细菌细胞生长的冷敏感表型。这两个等位基因均赋予冷敏感表型,并且是由位于YidC的第三个跨膜(TM3)段的点突变导致的,表​​明该区域对于YidC功能至关重要。我们发现 yidC C423R )突变体在膜蛋白插入时具有弱表型,而 yidC P431L )突变导致更强的表型。在这两种情况下,受影响的底物均包括Pf3外壳蛋白和ATP合酶F 1 F o 亚基c(F o C),而CyoA (细胞色素 bo3 奎诺酚氧化酶复合物的奎诺尔结合亚基)和野生型前大衣在任一冷敏感突变体中均受到轻微影响或不受影响。为了确定不同的底物是否需要不同水平的YidC活性用于膜插入,我们进行了研究,其中使用阿拉伯糖依赖性表达系统消耗了YidC。我们发现,?3M-PC-Lep(在procoat-Lep [PC-Lep]蛋白的中间插入了三个带负电荷的残基的构建体)和Pf3 P2(在C的C末端添加了Lep P2域的构建体) Pf3涂层)需要的YidC量最高,而CyoA-N-P2(CyoA的氨基末端部分与Lep P2可溶域融合的构建体)和PC-Lep所需的量最少,而F C需要适度的YidC水平。尽管冷敏感突变可以优先影响一种底物而不是另一种底物,但我们的结果表明,不同的底物需要不同水平的YidC活性才能插入膜。最后,我们获得了几种克服C423R突变的冷敏感性的基因内抑制子。一对突变表明YidC的TM2和TM3之间存在相互作用。这些研究揭示了YidC蛋白的关键区域,并提供了对YidC插入酶底物谱的深入了解。

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