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New antioxidant with dual functions as a peroxidase and chaperone in Pseudomonas aeruginosa

Authors
An, Byung ChullLee, Seung SikLee, Eun MiLee, Jae TaekWi, Seung GonJung, Hyun SukPark, WoojunChung, Byung Yeoup
Issue Date
2월-2010
Publisher
KOREAN SOC MOLECULAR & CELLULAR BIOLOGY
Keywords
chaperone; oxidative stress; peroxidase; peroxiredoxin; Pseudomonas aeruginosa
Citation
MOLECULES AND CELLS, v.29, no.2, pp.145 - 151
Indexed
SCIE
SCOPUS
KCI
Journal Title
MOLECULES AND CELLS
Volume
29
Number
2
Start Page
145
End Page
151
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/117128
DOI
10.1007/s10059-010-0023-1
ISSN
1016-8478
Abstract
Thiol-based peroxiredoxins (Prxs) are conserved throughout all kingdoms. We have found that a conserved typical 2-Cys Prx-like protein (PaPrx) from Pseudomonas aeruginosa bacteria displays diversity in its structure and apparent molecular weight (MW), and can act alternatively as a peroxidase and molecular chaperone. We have also identified a regulatory factor involved in this structural and functional switching. Exposure of P. aeruginosa to hydrogen peroxide (H2O2) causes PaPrx to convert from a high MW (HMW) complex to a low MW (LMW) form, which triggers a chaperone to peroxidase functional switch. This structural switching is primarily guided by either the thioredoxin (Trx) or glutathione (GSH) systems. Furthermore, comparison of our structural data [native and non-reducing polyacrylamide gel electrophoresis (PAGE) analysis, size exclusion chromatography (SEC) analysis, and electron microscopy (EM) observations] and enzymatic analyses (peroxidase and chaperone assay) revealed that the formation of oligomeric HMW complex structures increased chaperone activity of PaPrx. These results suggest that multimerization of PaPrx complexes promotes chaperone activity, and dissociation of the complexes into LMW species enhances peroxidase activity. Thus, the dual functions of PaPrx are clearly associated with their ability to form distinct protein structures.
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Park, Woo jun
생명과학대학 (환경생태공학부)
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