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Genetic analysis of disulfide isomerization in Escherichia coli: expression of DsbC is modulated by RNase E-dependent mRNA processing.大肠杆菌中二硫键异构化的遗传分析:DsbC的表达受核糖核酸酶E依赖性mRNA加工的调控。
J Bacteriol. 2004 Feb;186(3):654-60. doi: 10.1128/JB.186.3.654-660.2004.
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Disulfide Bond Formation in the Periplasm of .在……周质中的二硫键形成 。 你提供的原文似乎不完整,“of”后面缺少具体内容。
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本文引用的文献

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RraA. a protein inhibitor of RNase E activity that globally modulates RNA abundance in E. coli.RraA,一种核糖核酸酶E活性的蛋白质抑制剂,可全面调节大肠杆菌中的RNA丰度。
Cell. 2003 Sep 5;114(5):623-34.
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Initiation of tRNA maturation by RNase E is essential for cell viability in E. coli.核糖核酸酶E启动tRNA成熟对于大肠杆菌的细胞生存能力至关重要。
Genes Dev. 2002 May 1;16(9):1102-15. doi: 10.1101/gad.983502.
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Oxidative protein folding in bacteria.细菌中的氧化蛋白质折叠
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Model peptide substrates and ligands in analysis of action of mammalian protein disulfide-isomerase.
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Roles of thiol-redox pathways in bacteria.硫醇-氧化还原途径在细菌中的作用。
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Effect of sequences of the active-site dipeptides of DsbA and DsbC on in vivo folding of multidisulfide proteins in Escherichia coli.DsbA和DsbC活性位点二肽序列对大肠杆菌中多二硫键蛋白体内折叠的影响。
J Bacteriol. 2001 Feb;183(3):980-8. doi: 10.1128/JB.183.3.980-988.2001.
7
Transmembrane electron transfer by the membrane protein DsbD occurs via a disulfide bond cascade.膜蛋白DsbD介导的跨膜电子传递通过二硫键级联反应发生。
Cell. 2000 Nov 22;103(5):769-79. doi: 10.1016/s0092-8674(00)00180-x.
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Emerging features of mRNA decay in bacteria.细菌中mRNA衰变的新特征。
RNA. 2000 Aug;6(8):1079-90. doi: 10.1017/s1355838200001023.
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In vivo and in vitro function of the Escherichia coli periplasmic cysteine oxidoreductase DsbG.大肠杆菌周质半胱氨酸氧化还原酶DsbG的体内和体外功能
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Degradation of mRNA in Escherichia coli: an old problem with some new twists.大肠杆菌中mRNA的降解:一个有新变化的老问题。
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大肠杆菌中二硫键异构化的遗传分析:DsbC的表达受核糖核酸酶E依赖性mRNA加工的调控。

Genetic analysis of disulfide isomerization in Escherichia coli: expression of DsbC is modulated by RNase E-dependent mRNA processing.

作者信息

Zhan Xiaoming, Gao Junjun, Jain Chaitanya, Cieslewicz Michael J, Swartz James R, Georgiou George

机构信息

Institute for Cell and Molecular Biology, University of Texas Austin, Austin, Texas 78712, USA.

出版信息

J Bacteriol. 2004 Feb;186(3):654-60. doi: 10.1128/JB.186.3.654-660.2004.

DOI:10.1128/JB.186.3.654-660.2004
PMID:14729690
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC321487/
Abstract

We designed a selection strategy for the isolation of Escherichia coli mutants exhibiting enhanced protein disulfide isomerase activity. The folding of a variant of tissue plasminogen activator (v-tPA), a protein containing nine disulfide bonds, in the bacterial periplasm is completely dependent on the level of disulfide isomerase activity of the cell. Mutations that increase this activity mediate the formation of catalytically active v-tPA, which in turn cleaves a p-aminobenzoic acid (PABA)-peptide adduct to release free PABA and thus allows the growth of an auxotrophic strain. Following chemical mutagenesis, a total of eight E. coli mutants exhibiting significantly higher disulfide isomerization activity, not only with v-tPA but also with two other unrelated protein substrates, were isolated. This phenotype resulted from significantly increased expression of the bacterial disulfide isomerase DsbC. In seven of the eight mutants, the upregulation of DsbC was found to be related to defects in RNA processing by RNase E, the rne gene product. Specifically, the genetic lesions in five mutants were shown to be allelic to rne, while an additional two mutants exhibited impaired RNase E activity due to lesions in other loci. The importance of mRNA stability on the expression of DsbC is underscored by the short half-life of the dsbC transcript, which was found to be only 0.8 min at 37 degrees C in wild-type cells but was two- to threefold longer in some of the stronger mutants. These results (i) confirm the central role of DsbC in disulfide bond isomerization in the bacterial periplasm and (ii) suggest a critical role for RNase E in regulating DsbC expression.

摘要

我们设计了一种筛选策略,用于分离具有增强的蛋白质二硫键异构酶活性的大肠杆菌突变体。组织型纤溶酶原激活剂变体(v-tPA)是一种含有九个二硫键的蛋白质,其在细菌周质中的折叠完全依赖于细胞中二硫键异构酶的活性水平。增加这种活性的突变介导了具有催化活性的v-tPA的形成,v-tPA进而切割对氨基苯甲酸(PABA)-肽加合物以释放游离的PABA,从而使营养缺陷型菌株得以生长。经过化学诱变后,共分离出八个大肠杆菌突变体,它们不仅对v-tPA,而且对另外两种不相关的蛋白质底物都表现出显著更高的二硫键异构化活性。这种表型是由于细菌二硫键异构酶DsbC的表达显著增加所致。在八个突变体中的七个中,发现DsbC的上调与RNase E(rne基因产物)在RNA加工中的缺陷有关。具体而言,五个突变体中的遗传损伤被证明与rne等位,而另外两个突变体由于其他位点的损伤而表现出RNase E活性受损。dsbC转录本的半衰期较短,在野生型细胞中于37℃时仅为0.8分钟,但在一些较强的突变体中则延长了两到三倍,这突出了mRNA稳定性对DsbC表达的重要性。这些结果(i)证实了DsbC在细菌周质中二硫键异构化中的核心作用,以及(ii)表明RNase E在调节DsbC表达中起关键作用。