Cargando…

Charged and Hydrophobic Surfaces on the A Chain of Shiga-Like Toxin 1 Recognize the C-Terminal Domain of Ribosomal Stalk Proteins

Shiga-like toxins are ribosome-inactivating proteins (RIP) produced by pathogenic E. coli strains that are responsible for hemorrhagic colitis and hemolytic uremic syndrome. The catalytic A(1) chain of Shiga-like toxin 1 (SLT-1), a representative RIP, first docks onto a conserved peptide SD[D/E]DMGF...

Descripción completa

Detalles Bibliográficos
Autores principales: McCluskey, Andrew J., Bolewska-Pedyczak, Eleonora, Jarvik, Nick, Chen, Gang, Sidhu, Sachdev S., Gariépy, Jean
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3280276/
https://www.ncbi.nlm.nih.gov/pubmed/22355345
http://dx.doi.org/10.1371/journal.pone.0031191
_version_ 1782223806180360192
author McCluskey, Andrew J.
Bolewska-Pedyczak, Eleonora
Jarvik, Nick
Chen, Gang
Sidhu, Sachdev S.
Gariépy, Jean
author_facet McCluskey, Andrew J.
Bolewska-Pedyczak, Eleonora
Jarvik, Nick
Chen, Gang
Sidhu, Sachdev S.
Gariépy, Jean
author_sort McCluskey, Andrew J.
collection PubMed
description Shiga-like toxins are ribosome-inactivating proteins (RIP) produced by pathogenic E. coli strains that are responsible for hemorrhagic colitis and hemolytic uremic syndrome. The catalytic A(1) chain of Shiga-like toxin 1 (SLT-1), a representative RIP, first docks onto a conserved peptide SD[D/E]DMGFGLFD located at the C-terminus of all three eukaryotic ribosomal stalk proteins and halts protein synthesis through the depurination of an adenine base in the sarcin-ricin loop of 28S rRNA. Here, we report that the A(1) chain of SLT-1 rapidly binds to and dissociates from the C-terminal peptide with a monomeric dissociation constant of 13 µM. An alanine scan performed on the conserved peptide revealed that the SLT-1 A(1) chain interacts with the anionic tripeptide DDD and the hydrophobic tetrapeptide motif FGLF within its sequence. Based on these 2 peptide motifs, SLT-1 A(1) variants were generated that displayed decreased affinities for the stalk protein C-terminus and also correlated with reduced ribosome-inactivating activities in relation to the wild-type A(1) chain. The toxin-peptide interaction and subsequent toxicity were shown to be mediated by cationic and hydrophobic docking surfaces on the SLT-1 catalytic domain. These docking surfaces are located on the opposite face of the catalytic cleft and suggest that the docking of the A(1) chain to SDDDMGFGLFD may reorient its catalytic domain to face its RNA substrate. More importantly, both the delineated A(1) chain ribosomal docking surfaces and the ribosomal peptide itself represent a target and a scaffold, respectively, for the design of generic inhibitors to block the action of RIPs.
format Online
Article
Text
id pubmed-3280276
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-32802762012-02-21 Charged and Hydrophobic Surfaces on the A Chain of Shiga-Like Toxin 1 Recognize the C-Terminal Domain of Ribosomal Stalk Proteins McCluskey, Andrew J. Bolewska-Pedyczak, Eleonora Jarvik, Nick Chen, Gang Sidhu, Sachdev S. Gariépy, Jean PLoS One Research Article Shiga-like toxins are ribosome-inactivating proteins (RIP) produced by pathogenic E. coli strains that are responsible for hemorrhagic colitis and hemolytic uremic syndrome. The catalytic A(1) chain of Shiga-like toxin 1 (SLT-1), a representative RIP, first docks onto a conserved peptide SD[D/E]DMGFGLFD located at the C-terminus of all three eukaryotic ribosomal stalk proteins and halts protein synthesis through the depurination of an adenine base in the sarcin-ricin loop of 28S rRNA. Here, we report that the A(1) chain of SLT-1 rapidly binds to and dissociates from the C-terminal peptide with a monomeric dissociation constant of 13 µM. An alanine scan performed on the conserved peptide revealed that the SLT-1 A(1) chain interacts with the anionic tripeptide DDD and the hydrophobic tetrapeptide motif FGLF within its sequence. Based on these 2 peptide motifs, SLT-1 A(1) variants were generated that displayed decreased affinities for the stalk protein C-terminus and also correlated with reduced ribosome-inactivating activities in relation to the wild-type A(1) chain. The toxin-peptide interaction and subsequent toxicity were shown to be mediated by cationic and hydrophobic docking surfaces on the SLT-1 catalytic domain. These docking surfaces are located on the opposite face of the catalytic cleft and suggest that the docking of the A(1) chain to SDDDMGFGLFD may reorient its catalytic domain to face its RNA substrate. More importantly, both the delineated A(1) chain ribosomal docking surfaces and the ribosomal peptide itself represent a target and a scaffold, respectively, for the design of generic inhibitors to block the action of RIPs. Public Library of Science 2012-02-15 /pmc/articles/PMC3280276/ /pubmed/22355345 http://dx.doi.org/10.1371/journal.pone.0031191 Text en McCluskey et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
McCluskey, Andrew J.
Bolewska-Pedyczak, Eleonora
Jarvik, Nick
Chen, Gang
Sidhu, Sachdev S.
Gariépy, Jean
Charged and Hydrophobic Surfaces on the A Chain of Shiga-Like Toxin 1 Recognize the C-Terminal Domain of Ribosomal Stalk Proteins
title Charged and Hydrophobic Surfaces on the A Chain of Shiga-Like Toxin 1 Recognize the C-Terminal Domain of Ribosomal Stalk Proteins
title_full Charged and Hydrophobic Surfaces on the A Chain of Shiga-Like Toxin 1 Recognize the C-Terminal Domain of Ribosomal Stalk Proteins
title_fullStr Charged and Hydrophobic Surfaces on the A Chain of Shiga-Like Toxin 1 Recognize the C-Terminal Domain of Ribosomal Stalk Proteins
title_full_unstemmed Charged and Hydrophobic Surfaces on the A Chain of Shiga-Like Toxin 1 Recognize the C-Terminal Domain of Ribosomal Stalk Proteins
title_short Charged and Hydrophobic Surfaces on the A Chain of Shiga-Like Toxin 1 Recognize the C-Terminal Domain of Ribosomal Stalk Proteins
title_sort charged and hydrophobic surfaces on the a chain of shiga-like toxin 1 recognize the c-terminal domain of ribosomal stalk proteins
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3280276/
https://www.ncbi.nlm.nih.gov/pubmed/22355345
http://dx.doi.org/10.1371/journal.pone.0031191
work_keys_str_mv AT mccluskeyandrewj chargedandhydrophobicsurfacesontheachainofshigaliketoxin1recognizethecterminaldomainofribosomalstalkproteins
AT bolewskapedyczakeleonora chargedandhydrophobicsurfacesontheachainofshigaliketoxin1recognizethecterminaldomainofribosomalstalkproteins
AT jarviknick chargedandhydrophobicsurfacesontheachainofshigaliketoxin1recognizethecterminaldomainofribosomalstalkproteins
AT chengang chargedandhydrophobicsurfacesontheachainofshigaliketoxin1recognizethecterminaldomainofribosomalstalkproteins
AT sidhusachdevs chargedandhydrophobicsurfacesontheachainofshigaliketoxin1recognizethecterminaldomainofribosomalstalkproteins
AT gariepyjean chargedandhydrophobicsurfacesontheachainofshigaliketoxin1recognizethecterminaldomainofribosomalstalkproteins