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Proteome analysis of alkylhydroxide peroxidase-deficient isogenic mutant of helicobacter pylori 26695open access

Authors
이우곤백승철신민경정명환박진식하종훈이동해김민정신정이Kang, H.-L.
Issue Date
Dec-2019
Publisher
The Korean Society for Mocrobiology / The Korean Society of Virology
Keywords
AhpC; Antioxidant; Helicobacter pylori
Citation
Journal of Bacteriology and Virology, v.49, no.4, pp 191 - 202
Pages
12
Indexed
SCOPUS
KCI
Journal Title
Journal of Bacteriology and Virology
Volume
49
Number
4
Start Page
191
End Page
202
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/10803
DOI
10.4167/jbv.2019.49.4.191
ISSN
1598-2467
2093-0429
Abstract
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. ? 2019 Journal of Bacteriology and Virology.
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의과대학 (의학과)
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