Identification and Characterization of Small Molecules That Inhibit Intracellular Toxin Transport
- 1 September 2007
- journal article
- Published by American Society for Microbiology in Infection and Immunity
- Vol. 75 (9) , 4552-4561
- https://doi.org/10.1128/iai.00442-07
Abstract
Shiga toxin (Stx), cholera toxin (Ctx), and the plant toxin ricin are among several toxins that reach their intracellular destinations via a complex route. Following endocytosis, these toxins travel in a retrograde direction through the endosomal system to the trans-Golgi network, Golgi apparatus, and endoplasmic reticulum (ER). There the toxins are transported across the ER membrane to the cytosol, where they carry out their toxic effects. Transport via the ER from the cell surface to the cytosol is apparently unique to pathogenic toxins, raising the possibility that various stages in the transport pathway can be therapeutically targeted. We have applied a luciferase-based high-throughput screen to a chemical library of small-molecule compounds in order to identify inhibitors of Stx. We report two novel compounds that protect against Stx and ricin inhibition of protein synthesis, and we demonstrate that these compounds reversibly inhibit bacterial transport at various stages in the endocytic pathway. One compound (compound 75) inhibited transport at an early stage of Stx and Ctx transport and also provided protection against diphtheria toxin, which enters the cytosol from early endosomes. In contrast, compound 134 inhibited transport from recycling endosomes through the Golgi apparatus and protected only against toxins that access the ER. Small-molecule compounds such as these will provide insight into the mechanism of toxin transport and lead to the identification of compounds with therapeutic potential against toxins routed through the ER.Keywords
This publication has 71 references indexed in Scilit:
- Retrograde transport from endosomes to the trans-Golgi networkNature Reviews Molecular Cell Biology, 2006
- Overexpression of Rab22a hampers the transport between endosomes and the Golgi apparatusExperimental Cell Research, 2005
- Efficient endosome-to-Golgi transport of Shiga toxin is dependent on dynamin and clathrinJournal of Cell Science, 2004
- Evidence that the transport of ricin to the cytoplasm is independent of both Rab6A and COPIJournal of Cell Science, 2003
- Induction of Direct Endosome to Endoplasmic Reticulum Transport in Chinese Hamster Ovary (CHO) Cells (LdlF) with a Temperature-sensitive Defect in ϵ-Coatomer Protein (ϵ-COP)Journal of Biological Chemistry, 2003
- Golgi disassembly in apoptosis: cause or effect?Trends in Cell Biology, 2003
- A caspase cleavage fragment of p115 induces fragmentation of the Golgi apparatus and apoptosisThe Journal of cell biology, 2002
- Staurosporine induces endothelial cell apoptosis via focal adhesion kinase dephosphorylation and focal adhesion disassembly independent of focal adhesion kinase proteolysisBiochemical Journal, 2002
- Protein Sorting by Directed Maturation of Golgi CompartmentsScience, 1999
- Ribonuclease activity associated with the 60S ribosome-inactivating proteins ricin A, phytolaccin and Shiga toxinBiochemical and Biophysical Research Communications, 1985