Proteome Analysis of Alkylhydroxide Peroxidase-Deficient Isogenic Mutant ofHelicobacter pylori26695

Q4 Immunology and Microbiology Journal of Bacteriology and Virology Pub Date : 2019-01-01 DOI:10.4167/jbv.2019.49.4.191
Woo-Kon Lee, B. Chul, M. Shin, Myunghwan Jung, Jin-Sik Park, Jong-Hoon Ha, Dong-Hae Lee, Min Jeong Kim, Jeong-Ih Shin, KangHyung Lyun
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Abstract

©This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/ license/by-nc/3.0/). In order to investigate the antioxidant effect of alkylhydroxide peroxidase (ahpC) of Helicobacter pylori (H. pylori) 26695, an ahpC-deficient mutant (H. pylori 26695 ahpC::cat) was generated. ahpC-deficient mutant was grown slowly at lower pressure of oxygen (5% oxygen) compared to the H. pylori 26695. Whole cell proteins isolated form H. pylori 26695 and H. pylori 26695 ahpC::cat were analyzed by MALDI-TOF and tandem-MS. The expression of 15 proteins, including Ppa, HypB, GrpE, Elp, RecA, GroES, Mda66, RibE, NapA, GlnA, BioB, TrxB, Tsf, FumC and Icd, was more than doubled in H. pylori 26695 ahpC::cat. Production of 10 proteins such as UreG, FabE, Adk, Pnp, OorC, AtpA, AtpD, Nqq3, Pfr, and TagD decreased below 50% in H. pylori 26695 ahpC::cat compared to the H. pylori 26695. In microarray analysis, 9 genes including sul1, amiE, frxA, fecA, hyuA, and katA increased in transcription level in H. pylori 26695 ahpC::cat compared to H. pylori 26695. A total of 24 genes, including flaB, protein kinase C inhibitor, cag16, pabC, and sabA, reduced in transcription. 27 genes, including HP0889, showed common expression changes in ahpC, katA, and sodB-deficient mutations. As a result of this study, there were not many genes whose expression was commonly changed by the deletion of each of the three major antioxidant enzymes of H. pylori. These results showed the functions and regulation of the three antioxidant enzymes were different in H. pylori.
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幽门螺杆菌26695烷基氢氧化酶缺陷等基因突变体的蛋白质组学分析
©这是一篇基于知识共享署名非商业许可协议(http://creativecommons.org/ License /by-nc/3.0/)的开放获取文章。为了研究幽门螺杆菌(h.p ylori) 26695的烷基氢氧化酶(ahpC)的抗氧化作用,制备了ahpC缺陷突变体(h.p ylori 26695 ahpC::cat)。与幽门螺杆菌26695相比,ahpc缺陷突变体在较低的氧气压力(5%氧气)下生长缓慢。采用MALDI-TOF和串联质谱对H. pylori 26695和H. pylori 26695 ahpC::cat分离的全细胞蛋白进行分析。Ppa、HypB、GrpE、Elp、RecA、GroES、Mda66、RibE、NapA、GlnA、BioB、TrxB、Tsf、FumC、Icd等15种蛋白在H. pylori 26695 ahpC::cat中的表达量增加了一倍以上。与H. pylori 26695相比,H. pylori 26695 ahpC::cat中UreG、FabE、Adk、Pnp、OorC、AtpA、AtpD、Nqq3、Pfr和TagD等10种蛋白的产量下降了50%以下。微阵列分析显示,与H. pylori 26695相比,ahpC::cat中sul1、amiE、frxA、fecA、hyuA和katA等9个基因的转录水平升高。共有24个基因,包括flaB、蛋白激酶C抑制剂、cag16、pabC和sabA转录减少。包括HP0889在内的27个基因在ahpC、katA和sodb缺陷突变中表现出共同的表达变化。本研究结果表明,由于幽门螺杆菌三种主要抗氧化酶的缺失而导致表达普遍改变的基因并不多。结果表明,三种抗氧化酶在幽门螺杆菌中的作用和调控是不同的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Bacteriology and Virology
Journal of Bacteriology and Virology Immunology and Microbiology-Immunology
CiteScore
0.80
自引率
0.00%
发文量
16
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