The p21 Rho-activating Toxin Cytotoxic Necrotizing Factor 1 Is Endocytosed by a Clathrin-independent Mechanism and Enters the Cytosol by an Acidic-dependent Membrane Translocation Step
- 1 May 2000
- journal article
- Published by American Society for Cell Biology (ASCB) in Molecular Biology of the Cell
- Vol. 11 (5) , 1775-1787
- https://doi.org/10.1091/mbc.11.5.1775
Abstract
Cytotoxic necrotizing factor 1 (CNF1), a protein produced by pathogenic strains of Escherichia coli, activates the p21 Rho-GTP-binding protein, inducing a profound reorganization of the actin cytoskeleton. CNF1 binds to its cell surface receptor on HEp-2 cells with high affinity (K(d) = 20 pM). In HEp-2 cells the action of CNF1 is not blocked in the presence of filipin, a drug described to reduce cholera toxin internalization by the caveolae-like mechanism. Moreover, HEp-2 cells, which express a dominant negative form of proteins that impair the formation of clathrin coated-vesicles and internalization of transferrin (Eps15, dynamin or intersectin-Src homology 3), are still sensitive to CNF1. In this respect, the endocytosis of CNF1 is similar to the plant toxin ricin. However, unlike ricin toxin, CNF1 does not cross the Golgi apparatus and requires an acidic cell compartment to transfer its enzymatic activity into the cytosol in a manner similar to that required by diphtheria toxin. As shown for diphtheria toxin, the pH-dependent membrane translocation step of CNF1 could be mimicked at the level of the plasma membrane by a brief exposure to a pH of </=5.2. CNF1 is the first bacterial toxin described that uses both a clathrin-independent endocytic mechanism and an acidic-dependent membrane translocation step in its delivery of the catalytic domain to the cell cytosol.Keywords
This publication has 85 references indexed in Scilit:
- Ricin Cytotoxicity Is Sensitive to Recycling between the Endoplasmic Reticulum and the Golgi ComplexJournal of Biological Chemistry, 1995
- Gene clusters encoding the cytotoxic necrotizing factor type 1, Prs-fimbriae and α-hemolysin form the pathogenicity island II of the uropathogenicEscherichia colistrain J96FEMS Microbiology Letters, 1995
- Bacterial protein toxins penetrate cells via a four‐step mechanismFEBS Letters, 1994
- Mis-assembly of clathrin lattices on endosomes reveals a regulatory switch for coated pit formation.The Journal of cell biology, 1993
- How bacterial protein toxins enter cells: the role of partial unfolding in membrane translocationMolecular Microbiology, 1992
- The morphology but not the function of endosomes and lysosomes is altered by brefeldin A.The Journal of cell biology, 1992
- Brefeldin A: insights into the control of membrane traffic and organelle structure.The Journal of cell biology, 1992
- Inhibition of coated pit formation in Hep2 cells blocks the cytotoxicity of diphtheria toxin but not that of ricin toxin.The Journal of cell biology, 1985
- The entry of diphtheria toxin into the mammalian cell cytoplasm: evidence for lysosomal involvement.The Journal of cell biology, 1980
- Diphtheria Toxin: Specific Competition for Cell ReceptorsNature, 1973