InvF Is Required for Expression of Genes Encoding Proteins Secreted by the SPI1 Type III Secretion Apparatus inSalmonella typhimurium

Author:

Heran Darwin K.12,Miller Virginia L.23

Affiliation:

1. Department of Microbiology and Molecular Genetics, University of California, Los Angeles, Los Angeles, California 90095,1 and

2. Departments of Molecular Microbiology2 and

3. Pediatrics,3 Washington University School of Medicine, St. Louis, Missouri 63110

Abstract

ABSTRACT The expression of genes encoding proteins secreted by the SPI1 (Salmonella pathogenicity island) type III secretion apparatus is known to require the transcriptional activators SirA and HilA. However, neither SirA nor HilA is believed to directly activate the promoters of these genes. invF, the first gene of theinv-spa gene cluster, is predicted to encode an AraC-type transcriptional activator and is required for invasion into cultured epithelial cells. However, the genes which are regulated by InvF have not been identified. In this work, an in-frame deletion ininvF was constructed and tested for the expression of Φ(sigD-lacZYA),sipC::Tn5lacZY, and a plasmid-encoded Φ(sicA-lacZYA). SigD (Salmonella invasion gene) is a secreted protein required for the efficient invasion ofSalmonella typhimurium into cultured eucaryotic cells.sicA (Salmonella invasion chaperone) is the first gene of a putative operon encoding the Sip/Ssp (Salmonella invasion/Salmonella secreted proteins) invasion proteins secreted by the SPI1 type III export apparatus. invF was required for the expression of thesigD, sicA, and sipC fusions. This is the first demonstration that there is a functional promoter in the intergenic sequence between spaS and sicA. In addition, several proteins were either absent from or found in reduced amounts in the culture supernatants of the invF mutant. Therefore, invF is required for the optimal expression of several genes encoding SPI1-secreted proteins. Genetic evidence is also presented suggesting there is HilA-dependent readthrough transcription from the invF promoter at least through sipC.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

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