Cargando…

Calpain inhibition rescues troponin T3 fragmentation, increases Cav1.1, and enhances skeletal muscle force in aging sedentary mice

Loss of strength in human and animal models of aging can be partially attributed to a well‐recognized decrease in muscle mass; however, starting at middle‐age, the normalized force (force/muscle cross‐sectional area) in the knee extensors and single muscle fibers declines in a curvilinear manner. St...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Tan, Pereyra, Andrea S., Wang, Zhong‐Min, Birbrair, Alexander, Reisz, Julie A., Files, Daniel Clark, Purcell, Lina, Feng, Xin, Messi, Maria L., Feng, Hanzhong, Chalovich, Joseph, Jin, Jian‐Ping, Furdui, Cristina, Delbono, Osvaldo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4854922/
https://www.ncbi.nlm.nih.gov/pubmed/26892246
http://dx.doi.org/10.1111/acel.12453
_version_ 1782430273674149888
author Zhang, Tan
Pereyra, Andrea S.
Wang, Zhong‐Min
Birbrair, Alexander
Reisz, Julie A.
Files, Daniel Clark
Purcell, Lina
Feng, Xin
Messi, Maria L.
Feng, Hanzhong
Chalovich, Joseph
Jin, Jian‐Ping
Furdui, Cristina
Delbono, Osvaldo
author_facet Zhang, Tan
Pereyra, Andrea S.
Wang, Zhong‐Min
Birbrair, Alexander
Reisz, Julie A.
Files, Daniel Clark
Purcell, Lina
Feng, Xin
Messi, Maria L.
Feng, Hanzhong
Chalovich, Joseph
Jin, Jian‐Ping
Furdui, Cristina
Delbono, Osvaldo
author_sort Zhang, Tan
collection PubMed
description Loss of strength in human and animal models of aging can be partially attributed to a well‐recognized decrease in muscle mass; however, starting at middle‐age, the normalized force (force/muscle cross‐sectional area) in the knee extensors and single muscle fibers declines in a curvilinear manner. Strength is lost faster than muscle mass and is a more consistent risk factor for disability and death. Reduced expression of the voltage sensor Ca(2+) channel α1 subunit (Cav1.1) with aging leads to excitation–contraction uncoupling, which accounts for a significant fraction of the decrease in skeletal muscle function. We recently reported that in addition to its classical cytoplasmic location, fast skeletal muscle troponin T3 (TnT3) is fragmented in aging mice, and both full‐length TnT3 (FL‐TnT3) and its carboxyl‐terminal (CT‐TnT3) fragment shuttle to the nucleus. Here, we demonstrate that it regulates transcription of Cacna1s, the gene encoding Cav1.1. Knocking down TnT3 in vivo downregulated Cav1.1. TnT3 downregulation or overexpression decreased or increased, respectively, Cacna1s promoter activity, and the effect was ablated by truncating the TnT3 nuclear localization sequence. Further, we mapped the Cacna1s promoter region and established the consensus sequence for TnT3 binding to Cacna1s promoter. Systemic administration of BDA‐410, a specific calpain inhibitor, prevented TnT3 fragmentation, and Cacna1s and Cav1.1 downregulation and improved muscle force generation in sedentary old mice.
format Online
Article
Text
id pubmed-4854922
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-48549222016-06-16 Calpain inhibition rescues troponin T3 fragmentation, increases Cav1.1, and enhances skeletal muscle force in aging sedentary mice Zhang, Tan Pereyra, Andrea S. Wang, Zhong‐Min Birbrair, Alexander Reisz, Julie A. Files, Daniel Clark Purcell, Lina Feng, Xin Messi, Maria L. Feng, Hanzhong Chalovich, Joseph Jin, Jian‐Ping Furdui, Cristina Delbono, Osvaldo Aging Cell Original Articles Loss of strength in human and animal models of aging can be partially attributed to a well‐recognized decrease in muscle mass; however, starting at middle‐age, the normalized force (force/muscle cross‐sectional area) in the knee extensors and single muscle fibers declines in a curvilinear manner. Strength is lost faster than muscle mass and is a more consistent risk factor for disability and death. Reduced expression of the voltage sensor Ca(2+) channel α1 subunit (Cav1.1) with aging leads to excitation–contraction uncoupling, which accounts for a significant fraction of the decrease in skeletal muscle function. We recently reported that in addition to its classical cytoplasmic location, fast skeletal muscle troponin T3 (TnT3) is fragmented in aging mice, and both full‐length TnT3 (FL‐TnT3) and its carboxyl‐terminal (CT‐TnT3) fragment shuttle to the nucleus. Here, we demonstrate that it regulates transcription of Cacna1s, the gene encoding Cav1.1. Knocking down TnT3 in vivo downregulated Cav1.1. TnT3 downregulation or overexpression decreased or increased, respectively, Cacna1s promoter activity, and the effect was ablated by truncating the TnT3 nuclear localization sequence. Further, we mapped the Cacna1s promoter region and established the consensus sequence for TnT3 binding to Cacna1s promoter. Systemic administration of BDA‐410, a specific calpain inhibitor, prevented TnT3 fragmentation, and Cacna1s and Cav1.1 downregulation and improved muscle force generation in sedentary old mice. John Wiley and Sons Inc. 2016-02-19 2016-06 /pmc/articles/PMC4854922/ /pubmed/26892246 http://dx.doi.org/10.1111/acel.12453 Text en © 2016 The Authors. Aging Cell published by the Anatomical Society and John Wiley & Sons Ltd. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Zhang, Tan
Pereyra, Andrea S.
Wang, Zhong‐Min
Birbrair, Alexander
Reisz, Julie A.
Files, Daniel Clark
Purcell, Lina
Feng, Xin
Messi, Maria L.
Feng, Hanzhong
Chalovich, Joseph
Jin, Jian‐Ping
Furdui, Cristina
Delbono, Osvaldo
Calpain inhibition rescues troponin T3 fragmentation, increases Cav1.1, and enhances skeletal muscle force in aging sedentary mice
title Calpain inhibition rescues troponin T3 fragmentation, increases Cav1.1, and enhances skeletal muscle force in aging sedentary mice
title_full Calpain inhibition rescues troponin T3 fragmentation, increases Cav1.1, and enhances skeletal muscle force in aging sedentary mice
title_fullStr Calpain inhibition rescues troponin T3 fragmentation, increases Cav1.1, and enhances skeletal muscle force in aging sedentary mice
title_full_unstemmed Calpain inhibition rescues troponin T3 fragmentation, increases Cav1.1, and enhances skeletal muscle force in aging sedentary mice
title_short Calpain inhibition rescues troponin T3 fragmentation, increases Cav1.1, and enhances skeletal muscle force in aging sedentary mice
title_sort calpain inhibition rescues troponin t3 fragmentation, increases cav1.1, and enhances skeletal muscle force in aging sedentary mice
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4854922/
https://www.ncbi.nlm.nih.gov/pubmed/26892246
http://dx.doi.org/10.1111/acel.12453
work_keys_str_mv AT zhangtan calpaininhibitionrescuestroponint3fragmentationincreasescav11andenhancesskeletalmuscleforceinagingsedentarymice
AT pereyraandreas calpaininhibitionrescuestroponint3fragmentationincreasescav11andenhancesskeletalmuscleforceinagingsedentarymice
AT wangzhongmin calpaininhibitionrescuestroponint3fragmentationincreasescav11andenhancesskeletalmuscleforceinagingsedentarymice
AT birbrairalexander calpaininhibitionrescuestroponint3fragmentationincreasescav11andenhancesskeletalmuscleforceinagingsedentarymice
AT reiszjuliea calpaininhibitionrescuestroponint3fragmentationincreasescav11andenhancesskeletalmuscleforceinagingsedentarymice
AT filesdanielclark calpaininhibitionrescuestroponint3fragmentationincreasescav11andenhancesskeletalmuscleforceinagingsedentarymice
AT purcelllina calpaininhibitionrescuestroponint3fragmentationincreasescav11andenhancesskeletalmuscleforceinagingsedentarymice
AT fengxin calpaininhibitionrescuestroponint3fragmentationincreasescav11andenhancesskeletalmuscleforceinagingsedentarymice
AT messimarial calpaininhibitionrescuestroponint3fragmentationincreasescav11andenhancesskeletalmuscleforceinagingsedentarymice
AT fenghanzhong calpaininhibitionrescuestroponint3fragmentationincreasescav11andenhancesskeletalmuscleforceinagingsedentarymice
AT chalovichjoseph calpaininhibitionrescuestroponint3fragmentationincreasescav11andenhancesskeletalmuscleforceinagingsedentarymice
AT jinjianping calpaininhibitionrescuestroponint3fragmentationincreasescav11andenhancesskeletalmuscleforceinagingsedentarymice
AT furduicristina calpaininhibitionrescuestroponint3fragmentationincreasescav11andenhancesskeletalmuscleforceinagingsedentarymice
AT delbonoosvaldo calpaininhibitionrescuestroponint3fragmentationincreasescav11andenhancesskeletalmuscleforceinagingsedentarymice