Cloning and characterization of senC, a gene involved in both aerobic respiration and photosynthesis gene expression in Rhodobacter capsulatus

Author:

Buggy J1,Bauer C E1

Affiliation:

1. Department of Biology, Indiana University, Bloomington 47405, USA.

Abstract

The purple nonsulfur photosynthetic eubacterium Rhodobacter capsulatus is a versatile organism that can obtain cellular energy by several means, including the capture of light energy for photosynthesis as well as the use of light-independent respiration, in which molecular oxygen serves as a terminal electron acceptor. In this study, we have identified and characterized a novel gene, senC, mutations in which affect respiration as well as the induction of photosynthesis gene expression. The protein coded by senC exhibits 33% sequence identity to the yeast nucleus-encoded protein SCO1, which is thought to be a mitochondrion-associated cytochrome c oxidase assembly factor. Like yeast SCO1, SenC is required for optimal cytochrome c oxidase activity in aerobically grown R. capsulatus cells. We further show that senC is required for maximal induction from the puf and puh operons, which encode the structural polypeptides of the light-harvesting and reaction center complexes.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

Reference57 articles.

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3. Bauer C. E. Regulatory circuits controlling photosystem gene expression p. 1221-1239. In R. E. Blankenship M. Madigan and C. Bauer (ed.) Anoxygenic photosynthetic bacteria in press. Kluwer Academic Publishing Boston.

4. Control of photosystem genes in Rhodobacter capsulatus;Bauer C. E.;Trends Genet.,1993

5. The superoperonal organization of genes for pigment biosynthesis and reaction center proteins is a conserved feature in Rhodobacter capsulatus: analysis of overlapping bchB and puhA transcripts;Bauer C. E.;Mol. Gen. Genet.,1991

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