Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1952938 | Biochimie | 2008 | 6 Pages |
Abstract
In Salmonella enterica, loss of RNA chaperon Hfq promotes proteolytic cleavage of anti-ÏE factor RseA leading to the constitutive induction of the ÏE-dependent envelope stress response. Seeking to identify the source of the inducing signal, in the present study we measured RseA cleavage and ÏE-dependent transcription in strains lacking relevant outer membrane protein (omp) genes. We found removal of the main Salmonella porin, OmpD, to markedly reduce ÏE activation in hfq mutant cells. Subsequent removal of LamB and of OmpC further attenuated the response, indicating that different OMPs collectively contribute to the ÏE-activated phenotype. Thus, loss of Hfq-mediated regulation might cause unfolded OMPs to accumulate in the periplasm, triggering the ÏE response. These findings corroborate the role of Hfq protein as a pleiotropic regulator of OMP biogenesis in Gram-negative bacteria.
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Authors
Lionello Bossi, Danièla Maloriol, Nara Figueroa-Bossi,