Cargando…

ZASP Interacts with the Mechanosensing Protein Ankrd2 and p53 in the Signalling Network of Striated Muscle

ZASP is a cytoskeletal PDZ-LIM protein predominantly expressed in striated muscle. It forms multiprotein complexes and plays a pivotal role in the structural integrity of sarcomeres. Mutations in the ZASP protein are associated with myofibrillar myopathy, left ventricular non-compaction and dilated...

Descripción completa

Detalles Bibliográficos
Autores principales: Martinelli, Valentina C., Kyle, W. Buck, Kojic, Snezana, Vitulo, Nicola, Li, Zhaohui, Belgrano, Anna, Maiuri, Paolo, Banks, Lawrence, Vatta, Matteo, Valle, Giorgio, Faulkner, Georgine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3960238/
https://www.ncbi.nlm.nih.gov/pubmed/24647531
http://dx.doi.org/10.1371/journal.pone.0092259
_version_ 1782308145741168640
author Martinelli, Valentina C.
Kyle, W. Buck
Kojic, Snezana
Vitulo, Nicola
Li, Zhaohui
Belgrano, Anna
Maiuri, Paolo
Banks, Lawrence
Vatta, Matteo
Valle, Giorgio
Faulkner, Georgine
author_facet Martinelli, Valentina C.
Kyle, W. Buck
Kojic, Snezana
Vitulo, Nicola
Li, Zhaohui
Belgrano, Anna
Maiuri, Paolo
Banks, Lawrence
Vatta, Matteo
Valle, Giorgio
Faulkner, Georgine
author_sort Martinelli, Valentina C.
collection PubMed
description ZASP is a cytoskeletal PDZ-LIM protein predominantly expressed in striated muscle. It forms multiprotein complexes and plays a pivotal role in the structural integrity of sarcomeres. Mutations in the ZASP protein are associated with myofibrillar myopathy, left ventricular non-compaction and dilated cardiomyopathy. The ablation of its murine homologue Cypher results in neonatal lethality. ZASP has several alternatively spliced isoforms, in this paper we clarify the nomenclature of its human isoforms as well as their dynamics and expression pattern in striated muscle. Interaction is demonstrated between ZASP and two new binding partners both of which have roles in signalling, regulation of gene expression and muscle differentiation; the mechanosensing protein Ankrd2 and the tumour suppressor protein p53. These proteins and ZASP form a triple complex that appears to facilitate poly-SUMOylation of p53. We also show the importance of two of its functional domains, the ZM-motif and the PDZ domain. The PDZ domain can bind directly to both Ankrd2 and p53 indicating that there is no competition between it and p53 for the same binding site on Ankrd2. However there is competition for this binding site between p53 and a region of the ZASP protein lacking the PDZ domain, but containing the ZM-motif. ZASP is negative regulator of p53 in transactivation experiments with the p53-responsive promoters, MDM2 and BAX. Mutations in the ZASP ZM-motif induce modification in protein turnover. In fact, two mutants, A165V and A171T, were not able to bind Ankrd2 and bound only poorly to alpha-actinin2. This is important since the A165V mutation is responsible for zaspopathy, a well characterized autosomal dominant distal myopathy. Although the mechanism by which this mutant causes disease is still unknown, this is the first indication of how a ZASP disease associated mutant protein differs from that of the wild type ZASP protein.
format Online
Article
Text
id pubmed-3960238
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-39602382014-03-24 ZASP Interacts with the Mechanosensing Protein Ankrd2 and p53 in the Signalling Network of Striated Muscle Martinelli, Valentina C. Kyle, W. Buck Kojic, Snezana Vitulo, Nicola Li, Zhaohui Belgrano, Anna Maiuri, Paolo Banks, Lawrence Vatta, Matteo Valle, Giorgio Faulkner, Georgine PLoS One Research Article ZASP is a cytoskeletal PDZ-LIM protein predominantly expressed in striated muscle. It forms multiprotein complexes and plays a pivotal role in the structural integrity of sarcomeres. Mutations in the ZASP protein are associated with myofibrillar myopathy, left ventricular non-compaction and dilated cardiomyopathy. The ablation of its murine homologue Cypher results in neonatal lethality. ZASP has several alternatively spliced isoforms, in this paper we clarify the nomenclature of its human isoforms as well as their dynamics and expression pattern in striated muscle. Interaction is demonstrated between ZASP and two new binding partners both of which have roles in signalling, regulation of gene expression and muscle differentiation; the mechanosensing protein Ankrd2 and the tumour suppressor protein p53. These proteins and ZASP form a triple complex that appears to facilitate poly-SUMOylation of p53. We also show the importance of two of its functional domains, the ZM-motif and the PDZ domain. The PDZ domain can bind directly to both Ankrd2 and p53 indicating that there is no competition between it and p53 for the same binding site on Ankrd2. However there is competition for this binding site between p53 and a region of the ZASP protein lacking the PDZ domain, but containing the ZM-motif. ZASP is negative regulator of p53 in transactivation experiments with the p53-responsive promoters, MDM2 and BAX. Mutations in the ZASP ZM-motif induce modification in protein turnover. In fact, two mutants, A165V and A171T, were not able to bind Ankrd2 and bound only poorly to alpha-actinin2. This is important since the A165V mutation is responsible for zaspopathy, a well characterized autosomal dominant distal myopathy. Although the mechanism by which this mutant causes disease is still unknown, this is the first indication of how a ZASP disease associated mutant protein differs from that of the wild type ZASP protein. Public Library of Science 2014-03-19 /pmc/articles/PMC3960238/ /pubmed/24647531 http://dx.doi.org/10.1371/journal.pone.0092259 Text en © 2014 Martinelli 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
Martinelli, Valentina C.
Kyle, W. Buck
Kojic, Snezana
Vitulo, Nicola
Li, Zhaohui
Belgrano, Anna
Maiuri, Paolo
Banks, Lawrence
Vatta, Matteo
Valle, Giorgio
Faulkner, Georgine
ZASP Interacts with the Mechanosensing Protein Ankrd2 and p53 in the Signalling Network of Striated Muscle
title ZASP Interacts with the Mechanosensing Protein Ankrd2 and p53 in the Signalling Network of Striated Muscle
title_full ZASP Interacts with the Mechanosensing Protein Ankrd2 and p53 in the Signalling Network of Striated Muscle
title_fullStr ZASP Interacts with the Mechanosensing Protein Ankrd2 and p53 in the Signalling Network of Striated Muscle
title_full_unstemmed ZASP Interacts with the Mechanosensing Protein Ankrd2 and p53 in the Signalling Network of Striated Muscle
title_short ZASP Interacts with the Mechanosensing Protein Ankrd2 and p53 in the Signalling Network of Striated Muscle
title_sort zasp interacts with the mechanosensing protein ankrd2 and p53 in the signalling network of striated muscle
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3960238/
https://www.ncbi.nlm.nih.gov/pubmed/24647531
http://dx.doi.org/10.1371/journal.pone.0092259
work_keys_str_mv AT martinellivalentinac zaspinteractswiththemechanosensingproteinankrd2andp53inthesignallingnetworkofstriatedmuscle
AT kylewbuck zaspinteractswiththemechanosensingproteinankrd2andp53inthesignallingnetworkofstriatedmuscle
AT kojicsnezana zaspinteractswiththemechanosensingproteinankrd2andp53inthesignallingnetworkofstriatedmuscle
AT vitulonicola zaspinteractswiththemechanosensingproteinankrd2andp53inthesignallingnetworkofstriatedmuscle
AT lizhaohui zaspinteractswiththemechanosensingproteinankrd2andp53inthesignallingnetworkofstriatedmuscle
AT belgranoanna zaspinteractswiththemechanosensingproteinankrd2andp53inthesignallingnetworkofstriatedmuscle
AT maiuripaolo zaspinteractswiththemechanosensingproteinankrd2andp53inthesignallingnetworkofstriatedmuscle
AT bankslawrence zaspinteractswiththemechanosensingproteinankrd2andp53inthesignallingnetworkofstriatedmuscle
AT vattamatteo zaspinteractswiththemechanosensingproteinankrd2andp53inthesignallingnetworkofstriatedmuscle
AT vallegiorgio zaspinteractswiththemechanosensingproteinankrd2andp53inthesignallingnetworkofstriatedmuscle
AT faulknergeorgine zaspinteractswiththemechanosensingproteinankrd2andp53inthesignallingnetworkofstriatedmuscle