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Acute bout of exercise downregulates thioredoxin‐interacting protein expression in rat contracting skeletal muscles

We previously reported that in rat skeletal muscle, disuse (i.e., decreased muscle contractile activity) rapidly increases thioredoxin‐interacting protein (TXNIP), which is implicated in the reduced glucose uptake. Accordingly, we sought herein to (a) determine the effect of exercise (i.e., increase...

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Autores principales: Ra, Song‐Gyu, Kawamoto, Emi, Koshinaka, Keiichi, Iwabe, Maiko, Tomiga, Yuki, Iizawa, Hiroki, Honda, Hiroki, Higaki, Yasuki, Kawanaka, Kentaro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7261653/
https://www.ncbi.nlm.nih.gov/pubmed/32476292
http://dx.doi.org/10.14814/phy2.14388
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author Ra, Song‐Gyu
Kawamoto, Emi
Koshinaka, Keiichi
Iwabe, Maiko
Tomiga, Yuki
Iizawa, Hiroki
Honda, Hiroki
Higaki, Yasuki
Kawanaka, Kentaro
author_facet Ra, Song‐Gyu
Kawamoto, Emi
Koshinaka, Keiichi
Iwabe, Maiko
Tomiga, Yuki
Iizawa, Hiroki
Honda, Hiroki
Higaki, Yasuki
Kawanaka, Kentaro
author_sort Ra, Song‐Gyu
collection PubMed
description We previously reported that in rat skeletal muscle, disuse (i.e., decreased muscle contractile activity) rapidly increases thioredoxin‐interacting protein (TXNIP), which is implicated in the reduced glucose uptake. Accordingly, we sought herein to (a) determine the effect of exercise (i.e., increased muscle contractile activity) on muscle TXNIP protein expression, and (b) elucidate the mechanisms underlying the changes of TXNIP protein expression in response to exercise. Rat epitrochlearis and soleus muscles were dissected out after an acute bout of 3‐hr swimming (without weight loading) or 3‐hr treadmill running (15% grade at 9m/min). In a separate protocol, the isolated epitrochlearis and soleus muscles were incubated for 3 hr with AMP‐dependent protein kinase activator AICAR. Immediately after the cessation of the 3‐hr swimming, the TXNIP protein was decreased in epitrochlearis but not in soleus muscle. Conversely, 3‐hr treadmill running decreased the TXNIP protein in soleus but not in epitrochlearis muscle. TXNIP protein was decreased concomitantly with reduced postexercise muscle glycogen, showing that a decrease in TXNIP protein expression occurs in muscles that are recruited during exercise. In addition, 3‐hr incubation with AICAR decreased TXNIP protein in both isolated epitrochlearis and soleus muscles. Our results suggest that (a) an acute bout of exercise downregulates TXNIP protein expression in rat contracting skeletal muscles, and (b) the reduction in TXNIP protein expression in contracting muscles is probably mediated by AMPK activation, at least in part.
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spelling pubmed-72616532020-06-01 Acute bout of exercise downregulates thioredoxin‐interacting protein expression in rat contracting skeletal muscles Ra, Song‐Gyu Kawamoto, Emi Koshinaka, Keiichi Iwabe, Maiko Tomiga, Yuki Iizawa, Hiroki Honda, Hiroki Higaki, Yasuki Kawanaka, Kentaro Physiol Rep Original Research We previously reported that in rat skeletal muscle, disuse (i.e., decreased muscle contractile activity) rapidly increases thioredoxin‐interacting protein (TXNIP), which is implicated in the reduced glucose uptake. Accordingly, we sought herein to (a) determine the effect of exercise (i.e., increased muscle contractile activity) on muscle TXNIP protein expression, and (b) elucidate the mechanisms underlying the changes of TXNIP protein expression in response to exercise. Rat epitrochlearis and soleus muscles were dissected out after an acute bout of 3‐hr swimming (without weight loading) or 3‐hr treadmill running (15% grade at 9m/min). In a separate protocol, the isolated epitrochlearis and soleus muscles were incubated for 3 hr with AMP‐dependent protein kinase activator AICAR. Immediately after the cessation of the 3‐hr swimming, the TXNIP protein was decreased in epitrochlearis but not in soleus muscle. Conversely, 3‐hr treadmill running decreased the TXNIP protein in soleus but not in epitrochlearis muscle. TXNIP protein was decreased concomitantly with reduced postexercise muscle glycogen, showing that a decrease in TXNIP protein expression occurs in muscles that are recruited during exercise. In addition, 3‐hr incubation with AICAR decreased TXNIP protein in both isolated epitrochlearis and soleus muscles. Our results suggest that (a) an acute bout of exercise downregulates TXNIP protein expression in rat contracting skeletal muscles, and (b) the reduction in TXNIP protein expression in contracting muscles is probably mediated by AMPK activation, at least in part. John Wiley and Sons Inc. 2020-05-31 /pmc/articles/PMC7261653/ /pubmed/32476292 http://dx.doi.org/10.14814/phy2.14388 Text en © 2020 The Authors. Physiological Reports published by Wiley Periodicals, Inc. on behalf of The Physiological Society and the American Physiological Society. This is an open access article under the terms of the 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 Research
Ra, Song‐Gyu
Kawamoto, Emi
Koshinaka, Keiichi
Iwabe, Maiko
Tomiga, Yuki
Iizawa, Hiroki
Honda, Hiroki
Higaki, Yasuki
Kawanaka, Kentaro
Acute bout of exercise downregulates thioredoxin‐interacting protein expression in rat contracting skeletal muscles
title Acute bout of exercise downregulates thioredoxin‐interacting protein expression in rat contracting skeletal muscles
title_full Acute bout of exercise downregulates thioredoxin‐interacting protein expression in rat contracting skeletal muscles
title_fullStr Acute bout of exercise downregulates thioredoxin‐interacting protein expression in rat contracting skeletal muscles
title_full_unstemmed Acute bout of exercise downregulates thioredoxin‐interacting protein expression in rat contracting skeletal muscles
title_short Acute bout of exercise downregulates thioredoxin‐interacting protein expression in rat contracting skeletal muscles
title_sort acute bout of exercise downregulates thioredoxin‐interacting protein expression in rat contracting skeletal muscles
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7261653/
https://www.ncbi.nlm.nih.gov/pubmed/32476292
http://dx.doi.org/10.14814/phy2.14388
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