首页> 外文期刊>Journal of applied microbiology >Identification of stress-related proteins in Escherichia coli using the pollutant cis-dichloroethylene.
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Identification of stress-related proteins in Escherichia coli using the pollutant cis-dichloroethylene.

机译:使用污染物顺式二氯乙烯鉴定大肠杆菌中与应激相关的蛋白质。

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摘要

Aims. To complement our proteome study, whole-transcriptome analyses were utilized here to identify proteins related to degrading cis-1,2-dichloroethylene (cis-DCE). Methods and Results. Metabolically engineered Escherichia coli strains were utilized expressing an evolved toluene ortho-monooxygenase along with either (i) glutathione S-transferase and altered gamma-glutamylcysteine synthetase or (ii) a rationally engineered epoxide hydrolase. cis-DCE degradation induced 30 known stress genes and 32 uncharacterized genes. Because of the reactive cis-DCE epoxides formed, we hypothesized that some of these uncharacterized genes may be related to a variety of stresses. Using isogenic mutants, IbpB, YchH, YdeI, YeaR, YgiW, YoaG and YodD were related to hydrogen peroxide, cadmium and acid stress. Additional whole-transcriptome studies with hydrogen peroxide stress using the most hydrogen peroxide-sensitive mutants, ygiW and ychH, identified that FliS, GalS, HcaR, MglA, SufE, SufS, Tap, TnaB, YhcN and YjaA are also involved in the stress response of E. coli to hydrogen peroxide, cadmium and acid, as well as are involved in biofilm formation. Conclusion. Seventeen proteins are involved in the stress network for this organism, and YhcN and YchH were shown to be important for the degradation of cis-DCE. Significance and Impact of the Study. Six previously uncharacterized proteins (YchH, YdeI, YgiW, YhcN, YjaA and YodD) were shown to be stress proteins.
机译:目的为了补充我们的蛋白质组研究,此处使用全转录组分析来鉴定与降解顺式1,2-二氯乙烯(cis-DCE)相关的蛋白质。方法和结果。利用代谢工程化的大肠杆菌菌株表达进化的甲苯原单加氧酶以及(i)谷胱甘肽S-转移酶和改变的γ-谷氨酰半胱氨酸合成酶或(ii)合理工程化的环氧水解酶。顺-DCE降解诱导30个已知的胁迫基因和32个未表征的基因。由于形成了反应性顺式-DCE环氧化物,我们假设这些未表征的基因中的一些可能与多种胁迫相关。使用同基因突变体,IbpB,YchH,YdeI,YeaR,YgiW,YoaG和YodD与过氧化氢,镉和酸胁迫有关。使用最过氧化氢敏感的突变体ygiW和ychH对过氧化氢胁迫进行的其他全转录组研究表明,FliS,GalS,HcaR,MglA,SufE,SufS,Tap,TnaB,YhcN和YjaA也参与了应激反应大肠杆菌转化为过氧化氢,镉和酸,并参与生物膜的形成。结论。该生物体的应激网络中涉及17种蛋白质,并且YhcN和YchH被证明对顺式DCE的降解很重要。研究的意义和影响。六个先前未表征的蛋白(YchH,YdeI,YgiW,YhcN,YjaA和YodD)显示为应激蛋白。

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