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Dominant role of the [cbb.sub.3] oxidase in regulation of photosynthesis gene expression through the PrrBA system in Rhodobacter sphaeroides 2.4.1

Authors :
Kim, Yong-Jin
Ko, In-Jeong
Lee, Jin-Mok
Kang, Ho-Young
Kim, Young Min
Kaplan, Samuel
Oh, Jeong-Il
Source :
Journal of Bacteriology. August, 2007, Vol. 189 Issue 15-16, p5617, 9 p.
Publication Year :
2007

Abstract

In this study, the H303A mutant form of the [cbb.sub.3] oxidase (H303A oxidase), which has the H303A mutation in its catalytic subunit (CcoN), was purified from Rhodobacter sphaeroides. The H303A oxidase showed the same catalytic activity as did the wild-type form of the oxidase (WT oxidase). The heme contents of the mutant and WT forms of the [cbb.sub.3] oxidase were also comparable. However, the puf and puc operons, which are under the control of the PrrBA two-component system, were shown to be derepressed aerobically in the R. sphaeroides strain expressing the H303A oxidase. Since the strain harboring the H303A oxidase exhibited the same cytochrome c oxidase activity as the stain harboring the WT oxidase did, the aerobic derepression of photosynthesis gene expression observed in the H303A mutant appears to be the result of a defective signaling function of the H303A oxidase rather than reflecting any redox changes in the ubiquinone/ubiquinol pool. It was also demonstrated that ubiquinone inhibits not only the autokinase activity of full-length PrrB but also that of the truncated form of PrrB lacking its transmembrane domain, including the proposed quinone binding sequence. These results imply that the suggested ubiquinone binding site within the PrrB transmembrane domain is not necessary for the inhibition of PrrB kinase activity by ubiquinone. Instead, it is probable that signaling through H303 of the CcoN subunit of the [cbb.sub.3] oxidase is part of the pathway through which the [cbb.sub.3] oxidase affects the relative kinase/phosphatase activity of the membrane-bound PrrB.

Details

Language :
English
ISSN :
00219193
Volume :
189
Issue :
15-16
Database :
Gale General OneFile
Journal :
Journal of Bacteriology
Publication Type :
Academic Journal
Accession number :
edsgcl.167777507