4.7 Article

Multiple regulators and their interactions in vivo and its in vitro with the cbb regulons of Rhodobacter capsulatus

期刊

JOURNAL OF MOLECULAR BIOLOGY
卷 300, 期 5, 页码 1079-1099

出版社

ACADEMIC PRESS LTD
DOI: 10.1006/jmbi.2000.3914

关键词

CbbR; RegA; Rhodobacter capsulatus; cbb; RubisCO

资金

  1. NIGMS NIH HHS [R01 GM040941, R37 GM040941, GM40941, GM45404] Funding Source: Medline

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The cbb(I) and cbb(II) operons encode structural genes which are important for carbon dioxide fixation via the Calvin-Benson-Bassham reductive pentose phosphate pathway in Rhodobacter capsulatus. Each operon is regulated by cognate LysR-type transcriptional activators, CbbR(I) and CbbR(II), with the product of the cbbR(I) gene, CbbR(II), able to control its own transcription under some growth conditions. Furthermore, CbbR(I) may at least partially regulate the cbb(II) operon, with significant, yet regulated transcription of the cbb(II) operon occurring in the absence of any CbbR. These results suggested the importance of additional regulators. Thus, in addition to the rather specific control exerted by CbbR, a more globally significant regulatory system, the RegA-RegB (PrrA-PrrB) two-component system, was found to contribute to transcriptional regulation of each cbb operon. The regA and regB mutant strains were found to contain constitutive levels of form I and form II RubisCO, the major proteins encoded by the cbb(I) and cbb(II), operons, respectively. In addition, DNaseI footprint analyses indicated that RegA*, a constitutively active mutant form of RegA, binds specifically to cbb(I) and cbb(II) promoter-operator regions. CbbR(I), CbbR(II), and RegA binding loci were localized relative to transcription start sites, leading to a coherent picture of how each of these regulators interacts with specific promoter-operator sequences of the cbb operons. (C) 2000 Academic Press.

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