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PMID: 9333321 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Review

Accumulating evidence suggests that several AB-toxins subvert the endoplasmic reticulum-associated protein degradation pathway to enter target cells.

Biochemistry ·Vol. 36 ·No. 37 ·1997-09-16 ·Pages 11051-4

Hazes B, Read RJ

Abstract

Several AB-toxins appear to have independently evolved mechanisms by which they undergo retrograde transport from the cell membrane to the endoplasmic reticulum (ER). Recent insights into ER-associated protein degradation (ERAD) now provide clues as to why these toxins have selected the ER as the site of cell entry. We propose that they disguise themselves as misfolded proteins to enter the ERAD pathway. We further link the observation that these toxins have few, if any, lysine residues to the need to escape ubiquitin-mediated protein degradation, the ultimate destination of the ERAD pathway. The actual membrane translocation step remains unclear, but studies on viral immune evasion mechanisms indicate that retrotranslocation across the ER lipid bilayer may involve SEC61. Understanding the internalization process of these toxins opens new avenues for preventing their entry into cells. In addition, this knowledge can be exploited to create protein-based pharmaceuticals that act on cytosolic targets.

MeSH Terms
Amino Acid Sequence Bacterial Toxins/chemistry,metabolism Biological Transport Cytomegalovirus/metabolism Endoplasmic Reticulum/metabolism Golgi Apparatus/metabolism Lysine/analysis Molecular Sequence Data Protein Folding Proteins/metabolism RNA-Binding Proteins/metabolism Ricin/chemistry,metabolism Viral Proteins/metabolism
Chemicals
Bacterial Toxins Proteins RNA-Binding Proteins US11 protein, herpesvirus Viral Proteins Ricin Lysine
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Hazes B
Department of Medical Microbiology and Immunology, University of Alberta, 1-41 Medical Sciences Building, Edmunton, Alberta, Canada T6G 2H7.
Read R J
Article Info
Journal
Biochemistry
Abbr.
Biochemistry
ISSN
0006-2960
Published
1997-09-16
Pages
11051-4
Language
English
Region
United States
NLM ID
0370623
Subset
IM
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