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Crystal Structure of DsbA from Corynebacterium diphtheriae and Its Functional Implications for CueP in Gram-Positive Bacteriaopen access

Authors
Um, Si-HyeonKim, Jin-SikSong, SaemeeKim, Nam AhJeong, Seong HoonHa, Nam-Chul
Issue Date
Aug-2015
Publisher
KOREAN SOC MOLECULAR & CELLULAR BIOLOGY
Keywords
CueP; disulfide; DsbA; gram-positive bacteria
Citation
MOLECULES AND CELLS, v.38, no.8, pp 715 - 722
Pages
8
Indexed
SCI
SCIE
SCOPUS
KCI
Journal Title
MOLECULES AND CELLS
Volume
38
Number
8
Start Page
715
End Page
722
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/25574
DOI
10.14348/molcells.2015.0099
ISSN
1016-8478
0219-1032
Abstract
In Gram-negative bacteria in the periplasmic space, the dimeric thioredoxin-fold protein DsbC isomerizes and reduces incorrect disulfide bonds of unfolded proteins, while the monomeric thioredoxin-fold protein DsbA introduces disulfide bonds in folding proteins. In the Gram-negative bacteria Salmonella enterica serovar Typhimurium, the reduced form of CueP scavenges the production of hydroxyl radicals in the copper-mediated Fenton reaction, and DsbC is responsible for keeping CueP in the reduced, active form. Some DsbA proteins fulfill the functions of DsbCs, which are not present in Gram-positive bacteria. In this study, we identified a DsbA homologous protein (CdDsbA) in the Corynebacterium diphtheriae genome and determined its crystal structure in the reduced condition at 1.5 angstrom resolution. CdDsbA consists of a monomeric thioredoxin-like fold with an inserted helical domain and unique N-terminal extended region. We confirmed that CdDsbA has disulfide bond isomerase/reductase activity, and we present evidence that the N-terminal extended region is not required for this activity and folding of the core DsbA-like domain. Furthermore, we found that CdDsbA could reduce CueP from C. diphtheriae.
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