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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...
Autores principales: | , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Portland Press Ltd.
2020
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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. |
format | Online Article Text |
id | pubmed-7610153 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | Portland Press Ltd. |
record_format | MEDLINE/PubMed |
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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