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TheLegionella pneumophila kaioperon is implicated in stress response and confers fitness in competitive environments

Authors :
Aleksey Savchenko
Tobias Sahr
Tania Skarina
Delphine Dervins-Ravault
Monica Rolando
Nadine Honoré
Pierre Petit
Carmen Buchrieser
Craig Daniels
Laura Gomez Valero
Maria Loza-Correa
Source :
Environmental Microbiology. 16:359-381
Publication Year :
2013
Publisher :
Wiley, 2013.

Abstract

Legionella pneumophila uses aquatic protozoa as replication niche and protection from harsh environments. Although L. pneumophila is not known to have a circadian clock, it encodes homologues of the KaiBC proteins of Cyanobacteria that regulate circadian gene expression. We show that L. pneumophila kaiB, kaiC and the downstream gene lpp1114, are transcribed as a unit under the control of the stress sigma factor RpoS. KaiC and KaiB of L. pneumophila do not interact as evidenced by yeast and bacterial two-hybrid analyses. Fusion of the C-terminal residues of cyanobacterial KaiB to Legionella KaiB restores their interaction. In contrast, KaiC of L. pneumophila conserved autophosphorylation activity, but KaiB does not trigger the dephosphorylation of KaiC like in Cyanobacteria. The crystal structure of L. pneumophila KaiB suggests that it is an oxidoreductase-like protein with a typical thioredoxin fold. Indeed, mutant analyses revealed that the kai operon-encoded proteins increase fitness of L. pneumophila in competitive environments, and confer higher resistance to oxidative and sodium stress. The phylogenetic analysis indicates that L. pneumophila KaiBC resemble Synechosystis KaiC2B2 and not circadian KaiB1C1. Thus, the L. pneumophila Kai proteins do not encode a circadian clock, but enhance stress resistance and adaption to changes in the environments. © 2013 Society for Applied Microbiology and John Wiley & Sons Ltd.

Details

ISSN :
14622912
Volume :
16
Database :
OpenAIRE
Journal :
Environmental Microbiology
Accession number :
edsair.doi...........6d640838fd899781841078543e669111