
Shigella, the causative agents of bacillary dysentery, are capable of invading mammalian cells that are not normally phagocytic. Uptake of bacteria by the mammalian cells is directed by bacterial factors named IpaB, IpaC, and IpaD invasins, in which Ipa invasins secreted into the bacterial environment can interact with α5β1 integrin. We report here that Shigella invasion of epithelial cells requires rho activity, a ras-related GTP-binding protein. The invasive capacity of Shigella flexneri for Chinese hamster ovary (CHO) cells and other epithelial cells were greatly reduced when treated with Clostridium botulinum exoenzyme C3 transferase. Conversely, uptake of bacteria by CHO cells was promoted upon microinjection of an activated rho variant, Val14RhoA. Attachment of S. flexneri to CHO cells can elicit tyrosine phosphorylation of pp125FAK and paxillin, localized accumulation of F-actin, vinculin, and talin, and activation of protein kinase C, which were all blocked by the treatment with C3 transferase. Our results indicate that cellular signal transduction regulated by rho is essential for Shigella invasion of epithelial cells.
ADP Ribose Transferases, Talin, Botulinum Toxins, CHO Cells, Protein-Tyrosine Kinases, Actins, Epithelium, Vinculin, Shigella flexneri, Enzyme Activation, GTP-Binding Proteins, Cricetinae, Focal Adhesion Kinase 1, Focal Adhesion Protein-Tyrosine Kinases, Animals, Tyrosine, Phosphorylation, Cell Adhesion Molecules, Protein Kinase C
ADP Ribose Transferases, Talin, Botulinum Toxins, CHO Cells, Protein-Tyrosine Kinases, Actins, Epithelium, Vinculin, Shigella flexneri, Enzyme Activation, GTP-Binding Proteins, Cricetinae, Focal Adhesion Kinase 1, Focal Adhesion Protein-Tyrosine Kinases, Animals, Tyrosine, Phosphorylation, Cell Adhesion Molecules, Protein Kinase C
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