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Expression of SERPINA3s in cattle: focus on bovSERPINA3-7 reveals specific involvement in skeletal muscle

α(1)-Antichymotrypsin is encoded by the unique SERPINA3 gene in humans, while it is encoded by a cluster of eight closely related genes in cattle. BovSERPINA3 proteins present a high degree of similarity and significant divergences in the reactive centre loop (RCL) domains which are responsible for...

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Autores principales: Péré-Brissaud, Antoine, Blanchet, Xavier, Delourme, Didier, Pélissier, Patrick, Forestier, Lionel, Delavaud, Arnaud, Duprat, Nathalie, Picard, Brigitte, Maftah, Abderrahman, Brémaud, Laure
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4593666/
https://www.ncbi.nlm.nih.gov/pubmed/26562931
http://dx.doi.org/10.1098/rsob.150071
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author Péré-Brissaud, Antoine
Blanchet, Xavier
Delourme, Didier
Pélissier, Patrick
Forestier, Lionel
Delavaud, Arnaud
Duprat, Nathalie
Picard, Brigitte
Maftah, Abderrahman
Brémaud, Laure
author_facet Péré-Brissaud, Antoine
Blanchet, Xavier
Delourme, Didier
Pélissier, Patrick
Forestier, Lionel
Delavaud, Arnaud
Duprat, Nathalie
Picard, Brigitte
Maftah, Abderrahman
Brémaud, Laure
author_sort Péré-Brissaud, Antoine
collection PubMed
description α(1)-Antichymotrypsin is encoded by the unique SERPINA3 gene in humans, while it is encoded by a cluster of eight closely related genes in cattle. BovSERPINA3 proteins present a high degree of similarity and significant divergences in the reactive centre loop (RCL) domains which are responsible for the antiprotease activity. In this study, we analysed their expression patterns in a range of cattle tissues. Even if their expression is ubiquitous, we showed that the expression levels of each serpin vary in different tissues of 15-month-old Charolais bulls. Our results led us to focus on bovSERPINA3-7, one of the two most divergent members of the bovSERPINA3 family. Expression analyses showed that bovSERPINA3-7 protein presents different tissue-specific patterns with diverse degrees of N-glycosylation. Using a specific antibody raised against bovSERPINA3-7, Western blot analysis revealed a specific 96 kDa band in skeletal muscle. BovSERPINA3-7 immunoprecipitation and mass spectrometry revealed that this 96 kDa band corresponds to a complex of bovSERPINA3-7 and creatine kinase M-type. Finally, we reported that the bovSERPINA3-7 protein is present in slow-twitch skeletal myofibres. Precisely, bovSERPINA3-7 specifically colocalized with myomesin at the M-band region of sarcomeres where it could interact with other components such as creatine kinase M-type. This study opens new prospects on the bovSERPINA3-7 function in skeletal muscle and promotes opportunities for further understanding of the physiological role(s) of serpins.
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spelling pubmed-45936662015-10-15 Expression of SERPINA3s in cattle: focus on bovSERPINA3-7 reveals specific involvement in skeletal muscle Péré-Brissaud, Antoine Blanchet, Xavier Delourme, Didier Pélissier, Patrick Forestier, Lionel Delavaud, Arnaud Duprat, Nathalie Picard, Brigitte Maftah, Abderrahman Brémaud, Laure Open Biol Research α(1)-Antichymotrypsin is encoded by the unique SERPINA3 gene in humans, while it is encoded by a cluster of eight closely related genes in cattle. BovSERPINA3 proteins present a high degree of similarity and significant divergences in the reactive centre loop (RCL) domains which are responsible for the antiprotease activity. In this study, we analysed their expression patterns in a range of cattle tissues. Even if their expression is ubiquitous, we showed that the expression levels of each serpin vary in different tissues of 15-month-old Charolais bulls. Our results led us to focus on bovSERPINA3-7, one of the two most divergent members of the bovSERPINA3 family. Expression analyses showed that bovSERPINA3-7 protein presents different tissue-specific patterns with diverse degrees of N-glycosylation. Using a specific antibody raised against bovSERPINA3-7, Western blot analysis revealed a specific 96 kDa band in skeletal muscle. BovSERPINA3-7 immunoprecipitation and mass spectrometry revealed that this 96 kDa band corresponds to a complex of bovSERPINA3-7 and creatine kinase M-type. Finally, we reported that the bovSERPINA3-7 protein is present in slow-twitch skeletal myofibres. Precisely, bovSERPINA3-7 specifically colocalized with myomesin at the M-band region of sarcomeres where it could interact with other components such as creatine kinase M-type. This study opens new prospects on the bovSERPINA3-7 function in skeletal muscle and promotes opportunities for further understanding of the physiological role(s) of serpins. The Royal Society 2015-09-09 /pmc/articles/PMC4593666/ /pubmed/26562931 http://dx.doi.org/10.1098/rsob.150071 Text en © 2015 The Authors. http://creativecommons.org/licenses/by/4.0/ Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/, which permits unrestricted use, provided the original author and source are credited.
spellingShingle Research
Péré-Brissaud, Antoine
Blanchet, Xavier
Delourme, Didier
Pélissier, Patrick
Forestier, Lionel
Delavaud, Arnaud
Duprat, Nathalie
Picard, Brigitte
Maftah, Abderrahman
Brémaud, Laure
Expression of SERPINA3s in cattle: focus on bovSERPINA3-7 reveals specific involvement in skeletal muscle
title Expression of SERPINA3s in cattle: focus on bovSERPINA3-7 reveals specific involvement in skeletal muscle
title_full Expression of SERPINA3s in cattle: focus on bovSERPINA3-7 reveals specific involvement in skeletal muscle
title_fullStr Expression of SERPINA3s in cattle: focus on bovSERPINA3-7 reveals specific involvement in skeletal muscle
title_full_unstemmed Expression of SERPINA3s in cattle: focus on bovSERPINA3-7 reveals specific involvement in skeletal muscle
title_short Expression of SERPINA3s in cattle: focus on bovSERPINA3-7 reveals specific involvement in skeletal muscle
title_sort expression of serpina3s in cattle: focus on bovserpina3-7 reveals specific involvement in skeletal muscle
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4593666/
https://www.ncbi.nlm.nih.gov/pubmed/26562931
http://dx.doi.org/10.1098/rsob.150071
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