BglJ-RcsB Heterodimers Relieve Repression of the Escherichia coli bgl Operon by H-NS

Author:

Venkatesh G. Raja1,Kembou Koungni Frant Carlot1,Paukner Andreas1,Stratmann Thomas1,Blissenbach Birgit1,Schnetz Karin1

Affiliation:

1. Institute for Genetics, University of Cologne, Zülpicher Str. 47a, 50674 Cologne, Germany

Abstract

ABSTRACT RcsB is the response regulator of the complex Rcs two-component system, which senses perturbations in the outer membrane and peptidoglycan layer. BglJ is a transcriptional regulator whose constitutive expression causes activation of the H-NS- and StpA-repressed bgl (aryl-β, d -glucoside) operon in Escherichia coli . RcsB and BglJ both belong to the LuxR-type family of transcriptional regulators with a characteristic C-terminal DNA-binding domain. Here, we show that BglJ and RcsB interact and form heterodimers that presumably bind upstream of the bgl promoter, as suggested by mutation of a sequence motif related to the consensus sequence for RcsA-RcsB heterodimers. Heterodimerization of BglJ-RcsB and relief of H-NS-mediated repression of bgl by BglJ-RcsB are apparently independent of RcsB phosphorylation. In addition, we show that LeuO, a pleiotropic LysR-type transcriptional regulator, likewise binds to the bgl upstream regulatory region and relieves repression of bgl independently of BglJ-RcsB. Thus, LeuO can affect bgl directly, as shown here, and indirectly by activating the H-NS-repressed yjjQ-bglJ operon, as shown previously. Taken together, heterodimer formation of RcsB and BglJ expands the role of the Rcs two-component system and the network of regulators affecting the bgl promoter.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

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