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Calpain-2 participates in the process of calpain-1 inactivation

Calpain-1 and calpain-2 are highly structurally similar isoforms of calpain. The calpains, a family of intracellular cysteine proteases, cleave their substrates at specific sites, thus modifying their properties such as function or activity. These isoforms have long been considered to function in a...

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Autores principales: Shinkai-Ouchi, Fumiko, Shindo, Mayumi, Doi, Naoko, Hata, Shoji, Ono, Yasuko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Portland Press Ltd. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7610153/
https://www.ncbi.nlm.nih.gov/pubmed/33078830
http://dx.doi.org/10.1042/BSR20200552
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author Shinkai-Ouchi, Fumiko
Shindo, Mayumi
Doi, Naoko
Hata, Shoji
Ono, Yasuko
author_facet Shinkai-Ouchi, Fumiko
Shindo, Mayumi
Doi, Naoko
Hata, Shoji
Ono, Yasuko
author_sort Shinkai-Ouchi, Fumiko
collection PubMed
description Calpain-1 and calpain-2 are highly structurally similar isoforms of calpain. The calpains, a family of intracellular cysteine proteases, cleave their substrates at specific sites, thus modifying their properties such as function or activity. These isoforms have long been considered to function in a redundant or complementary manner, as they are both ubiquitously expressed and activated in a Ca(2+)- dependent manner. However, studies using isoform-specific knockout and knockdown strategies revealed that each calpain species carries out specific functions in vivo. To understand the mechanisms that differentiate calpain-1 and calpain-2, we focused on the efficiency and longevity of each calpain species after activation. Using an in vitro proteolysis assay of troponin T in combination with mass spectrometry, we revealed distinctive aspects of each isoform. Proteolysis mediated by calpain-1 was more sustained, lasting as long as several hours, whereas proteolysis mediated by calpain-2 was quickly blunted. Calpain-1 and calpain-2 also differed from each other in their patterns of autolysis. Calpain-2–specific autolysis sites in its PC1 domain are not cleaved by calpain-1, but calpain-2 cuts calpain-1 at the corresponding position. Moreover, at least in vitro, calpain-1 and calpain-2 do not perform substrate proteolysis in a synergistic manner. On the contrary, calpain-1 activity is suppressed in the presence of calpain-2, possibly because it is cleaved by the latter protein. These results suggest that calpain-2 functions as a down-regulation of calpain-1, a mechanism that may be applicable to other calpain species as well.
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spelling pubmed-76101532020-11-10 Calpain-2 participates in the process of calpain-1 inactivation Shinkai-Ouchi, Fumiko Shindo, Mayumi Doi, Naoko Hata, Shoji Ono, Yasuko Biosci Rep Post-Translational Modifications Calpain-1 and calpain-2 are highly structurally similar isoforms of calpain. The calpains, a family of intracellular cysteine proteases, cleave their substrates at specific sites, thus modifying their properties such as function or activity. These isoforms have long been considered to function in a redundant or complementary manner, as they are both ubiquitously expressed and activated in a Ca(2+)- dependent manner. However, studies using isoform-specific knockout and knockdown strategies revealed that each calpain species carries out specific functions in vivo. To understand the mechanisms that differentiate calpain-1 and calpain-2, we focused on the efficiency and longevity of each calpain species after activation. Using an in vitro proteolysis assay of troponin T in combination with mass spectrometry, we revealed distinctive aspects of each isoform. Proteolysis mediated by calpain-1 was more sustained, lasting as long as several hours, whereas proteolysis mediated by calpain-2 was quickly blunted. Calpain-1 and calpain-2 also differed from each other in their patterns of autolysis. Calpain-2–specific autolysis sites in its PC1 domain are not cleaved by calpain-1, but calpain-2 cuts calpain-1 at the corresponding position. Moreover, at least in vitro, calpain-1 and calpain-2 do not perform substrate proteolysis in a synergistic manner. On the contrary, calpain-1 activity is suppressed in the presence of calpain-2, possibly because it is cleaved by the latter protein. These results suggest that calpain-2 functions as a down-regulation of calpain-1, a mechanism that may be applicable to other calpain species as well. Portland Press Ltd. 2020-11-03 /pmc/articles/PMC7610153/ /pubmed/33078830 http://dx.doi.org/10.1042/BSR20200552 Text en © 2020 The Author(s). https://creativecommons.org/licenses/by/4.0/ This is an open access article published by Portland Press Limited on behalf of the Biochemical Society and distributed under the Creative Commons Attribution License 4.0 (CC BY).
spellingShingle Post-Translational Modifications
Shinkai-Ouchi, Fumiko
Shindo, Mayumi
Doi, Naoko
Hata, Shoji
Ono, Yasuko
Calpain-2 participates in the process of calpain-1 inactivation
title Calpain-2 participates in the process of calpain-1 inactivation
title_full Calpain-2 participates in the process of calpain-1 inactivation
title_fullStr Calpain-2 participates in the process of calpain-1 inactivation
title_full_unstemmed Calpain-2 participates in the process of calpain-1 inactivation
title_short Calpain-2 participates in the process of calpain-1 inactivation
title_sort calpain-2 participates in the process of calpain-1 inactivation
topic Post-Translational Modifications
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7610153/
https://www.ncbi.nlm.nih.gov/pubmed/33078830
http://dx.doi.org/10.1042/BSR20200552
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