Regulation of type III secretion in Bordetella
Open Access
- 15 April 2004
- journal article
- research article
- Published by Wiley in Molecular Microbiology
- Vol. 52 (4) , 1201-1214
- https://doi.org/10.1111/j.1365-2958.2004.04053.x
Abstract
The BvgAS virulence control system regulates the expression of type III secretion genes in Bordetella subspecies that infect humans and other mammals. We have identified five open reading frames, btrS, btrU, btrX, btrW and btrV, that are activated by BvgAS and encode regulatory factors that control type III secretion at the levels of transcription, protein expression and secretion. The btrS gene product bears sequence similarity to ECF (extracytoplasmic function) sigma factors and is required for transcription of the bsc locus. btrU, btrW and btrV encode proteins predicted to contain PP2C-like Ser phosphatase, HPK (His protein kinase)-like Ser kinase and STAS anti-sigma factor antagonist domains, respectively, which are characteristic of Gram-positive partner switching proteins in Bacillus subtilis. BtrU and BtrW are required for secretion of proteins that are exported by the bsc type III secretion system, whereas BtrV is specifically required for protein synthesis and/or stability. Bordetella species have thus evolved a unique cascade to differentially regulate type III secretion that combines a canonical phosphorelay system with an ECF sigma factor and a set of proteins with domain signatures that define partner switchers, which were traditionally thought to function only in Gram-positive bacteria. The presence of multiple layers and mechanisms of regulation most likely reflects the need to integrate multiple signals in controlling type III secretion. The bsc and btr loci are nearly identical between broad-host-range and human-specific Bordetella. Comparative analysis of Bordetella subspecies revealed that, whereas bsc and btr loci were transcribed in all subspecies, only broad-host-range strains expressed a functional type III secretion system in vitro. The block in type III secretion is post-transcriptional in human-adapted strains, and signal recognition appears to be a point of divergence between subspecies.This publication has 59 references indexed in Scilit:
- Secretion of YscP from Yersinia enterocolitica is essential to control the length of the injectisome needle but not to change the type III secretion substrate specificityMolecular Microbiology, 2005
- Bordetella type III secretion induces caspase 1-independent necrosisCellular Microbiology, 2003
- Yersinia enterocolitica Type III Secretion: yscM1 and yscM2 Regulate yop Gene Expression by a Posttranscriptional Mechanism That Targets the 5′ Untranslated Region of yop mRNAJournal of Bacteriology, 2002
- Mechanisms of bordetella pathogenesisFrontiers in Bioscience-Landmark, 2001
- TheBacillus subtilisregulator protein SpoIIE shares functional and structural similarities with eukaryotic protein phosphatases 2CFEMS Microbiology Letters, 1999
- Evidence for common sites of contact between the antisigma factor SpoIIAB and its partners SpoIIAA and the developmental transcription factor σF in Bacillus subtilisJournal of Molecular Biology, 1998
- THE ANTI-SIGMA FACTORSAnnual Review of Microbiology, 1998
- The σE‐mediated response to extracytoplasmic stress in Escherichia coli is transduced by RseA and RseB, two negative regulators of σEMolecular Microbiology, 1997
- Modulation of the Escherichia coliσE (RpoE) heat‐shock transcription‐factor activity by the RseA, RseB and RseC proteinsMolecular Microbiology, 1997
- Opposing pairs of serine protein kinases and phosphatases transmit signals of environmental stress to activate a bacterial transcription factor.Genes & Development, 1996