Affiliation:
1. Department of Microbiology and Molecular Genetics, Graduate School of Pharmaceutical Sciences, Chiba University, Chiba 263-8522
2. Department of Biological Sciences, Graduate School of Science, The University of Tokyo,Tokyo 113-0033, Japan
Abstract
ABSTRACT
An early step in the pathogenesis of
Salmonella enterica
serovar Typhimurium infection is bacterial penetration of the intestinal epithelium. Penetration requires the expression of invasion genes found in
Salmonella
pathogenicity island 1 (SPI1). These genes are controlled in a complex manner by regulators in SPI1, including HilA and InvF, and those outside SPI1, such as two-component regulatory systems and small DNA-binding proteins. We report here that the expression of invasion genes and the invasive phenotype of
S. enterica
serovar Typhimurium are negatively regulated by the ATP-dependent Lon protease, which is known to be a major contributor to proteolysis in
Escherichia coli
. A disrupted mutant of
lon
was able to efficiently invade cultured epithelial cells and showed increased production and secretion of three identified SPI1 proteins, SipA, SipC, and SipD. The
lon
mutant also showed a dramatic enhancement in transcription of the SPI1 genes
hilA
,
invF
,
sipA
, and
sipC
. The increases ranged from 10-fold to almost 40-fold. It is well known that the expression of SPI1 genes is also regulated in response to several environmental conditions. We found that the disruption of
lon
does not abolish the repression of
hilA
and
sipC
expression by high-oxygen or low-osmolarity conditions, suggesting that Lon represses SPI1 gene expression by a regulatory pathway independent of these environmental signals. Since HilA is thought to function as a central regulator of SPI1 gene expression, it is speculated that Lon may regulate SPI1 gene expression by proteolysis of putative factors required for activation of
hilA
expression.
Publisher
American Society for Microbiology
Subject
Molecular Biology,Microbiology
Reference54 articles.
1. Ahmer, B. M. M., J. van Reeuwijk, P. R. Watson, T. S. Wallis, and F. Heffron. 1999. Salmonella SirA is a global regulator of genes mediating enteropathogenesis. Mol. Microbiol.31:971–982.
2. Regulation of
Salmonella enterica
Serovar Typhimurium Invasion Genes by
csrA
3. Altier, C., M. Suyemoto, A. I. Ruiz, K. D. Burnham, and R. Maurer. 2000. Characterization of two novel regulatory genes affecting Salmonella invasion gene expression. Mol. Microbiol.35:635–646.
4. Amerik, A. Y., V. K. Antonov, A. E. Gorbalenya, S. A. Kotova, T. V. Rotanova, and E. V. Shimbarevich. 1991. Site-directed mutagenesis of La protease. A catalytically active serine residue. FEBS Lett.287:211–214.
5. Bajaj, V., C. Hwang, and C. A. Lee. 1995. hilA is a novel ompR/toxR member that activates the expression of Salmonella typhimurium invasion genes. Mol. Microbiol.18:715–727.
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