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AMPK regulates cell shape of cardiomyocytes by modulating turnover of microtubules through CLIP‐170

AMP‐activated protein kinase (AMPK) is a multifunctional kinase that regulates microtubule (MT) dynamic instability through CLIP‐170 phosphorylation; however, its physiological relevance in vivo remains to be elucidated. In this study, we identified an active form of AMPK localized at the intercalat...

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Autores principales: Yashirogi, Shohei, Nagao, Takemasa, Nishida, Yuya, Takahashi, Yusuke, Qaqorh, Tasneem, Yazawa, Issei, Katayama, Toru, Kioka, Hidetaka, Matsui, Tsubasa S, Saito, Shigeyoshi, Masumura, Yuki, Tsukamoto, Osamu, Kato, Hisakazu, Ueda, Hiromichi, Yamaguchi, Osamu, Yashiro, Kenta, Yamazaki, Satoru, Takashima, Seiji, Shintani, Yasunori
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/PMC7788454/
https://www.ncbi.nlm.nih.gov/pubmed/33251722
http://dx.doi.org/10.15252/embr.202050949
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author Yashirogi, Shohei
Nagao, Takemasa
Nishida, Yuya
Takahashi, Yusuke
Qaqorh, Tasneem
Yazawa, Issei
Katayama, Toru
Kioka, Hidetaka
Matsui, Tsubasa S
Saito, Shigeyoshi
Masumura, Yuki
Tsukamoto, Osamu
Kato, Hisakazu
Ueda, Hiromichi
Yamaguchi, Osamu
Yashiro, Kenta
Yamazaki, Satoru
Takashima, Seiji
Shintani, Yasunori
author_facet Yashirogi, Shohei
Nagao, Takemasa
Nishida, Yuya
Takahashi, Yusuke
Qaqorh, Tasneem
Yazawa, Issei
Katayama, Toru
Kioka, Hidetaka
Matsui, Tsubasa S
Saito, Shigeyoshi
Masumura, Yuki
Tsukamoto, Osamu
Kato, Hisakazu
Ueda, Hiromichi
Yamaguchi, Osamu
Yashiro, Kenta
Yamazaki, Satoru
Takashima, Seiji
Shintani, Yasunori
author_sort Yashirogi, Shohei
collection PubMed
description AMP‐activated protein kinase (AMPK) is a multifunctional kinase that regulates microtubule (MT) dynamic instability through CLIP‐170 phosphorylation; however, its physiological relevance in vivo remains to be elucidated. In this study, we identified an active form of AMPK localized at the intercalated disks in the heart, a specific cell–cell junction present between cardiomyocytes. A contractile inhibitor, MYK‐461, prevented the localization of AMPK at the intercalated disks, and the effect was reversed by the removal of MYK‐461, suggesting that the localization of AMPK is regulated by mechanical stress. Time‐lapse imaging analysis revealed that the inhibition of CLIP‐170 Ser‐311 phosphorylation by AMPK leads to the accumulation of MTs at the intercalated disks. Interestingly, MYK‐461 increased the individual cell area of cardiomyocytes in CLIP‐170 phosphorylation‐dependent manner. Moreover, heart‐specific CLIP‐170 S311A transgenic mice demonstrated elongation of cardiomyocytes along with accumulated MTs, leading to progressive decline in cardiac contraction. In conclusion, these findings suggest that AMPK regulates the cell shape and aspect ratio of cardiomyocytes by modulating the turnover of MTs through homeostatic phosphorylation of CLIP‐170 at the intercalated disks.
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spelling pubmed-77884542021-01-11 AMPK regulates cell shape of cardiomyocytes by modulating turnover of microtubules through CLIP‐170 Yashirogi, Shohei Nagao, Takemasa Nishida, Yuya Takahashi, Yusuke Qaqorh, Tasneem Yazawa, Issei Katayama, Toru Kioka, Hidetaka Matsui, Tsubasa S Saito, Shigeyoshi Masumura, Yuki Tsukamoto, Osamu Kato, Hisakazu Ueda, Hiromichi Yamaguchi, Osamu Yashiro, Kenta Yamazaki, Satoru Takashima, Seiji Shintani, Yasunori EMBO Rep Articles AMP‐activated protein kinase (AMPK) is a multifunctional kinase that regulates microtubule (MT) dynamic instability through CLIP‐170 phosphorylation; however, its physiological relevance in vivo remains to be elucidated. In this study, we identified an active form of AMPK localized at the intercalated disks in the heart, a specific cell–cell junction present between cardiomyocytes. A contractile inhibitor, MYK‐461, prevented the localization of AMPK at the intercalated disks, and the effect was reversed by the removal of MYK‐461, suggesting that the localization of AMPK is regulated by mechanical stress. Time‐lapse imaging analysis revealed that the inhibition of CLIP‐170 Ser‐311 phosphorylation by AMPK leads to the accumulation of MTs at the intercalated disks. Interestingly, MYK‐461 increased the individual cell area of cardiomyocytes in CLIP‐170 phosphorylation‐dependent manner. Moreover, heart‐specific CLIP‐170 S311A transgenic mice demonstrated elongation of cardiomyocytes along with accumulated MTs, leading to progressive decline in cardiac contraction. In conclusion, these findings suggest that AMPK regulates the cell shape and aspect ratio of cardiomyocytes by modulating the turnover of MTs through homeostatic phosphorylation of CLIP‐170 at the intercalated disks. John Wiley and Sons Inc. 2020-11-29 2021-01-07 /pmc/articles/PMC7788454/ /pubmed/33251722 http://dx.doi.org/10.15252/embr.202050949 Text en © 2020 The Authors. Published under the terms of the CC BY NC ND 4.0 license This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Articles
Yashirogi, Shohei
Nagao, Takemasa
Nishida, Yuya
Takahashi, Yusuke
Qaqorh, Tasneem
Yazawa, Issei
Katayama, Toru
Kioka, Hidetaka
Matsui, Tsubasa S
Saito, Shigeyoshi
Masumura, Yuki
Tsukamoto, Osamu
Kato, Hisakazu
Ueda, Hiromichi
Yamaguchi, Osamu
Yashiro, Kenta
Yamazaki, Satoru
Takashima, Seiji
Shintani, Yasunori
AMPK regulates cell shape of cardiomyocytes by modulating turnover of microtubules through CLIP‐170
title AMPK regulates cell shape of cardiomyocytes by modulating turnover of microtubules through CLIP‐170
title_full AMPK regulates cell shape of cardiomyocytes by modulating turnover of microtubules through CLIP‐170
title_fullStr AMPK regulates cell shape of cardiomyocytes by modulating turnover of microtubules through CLIP‐170
title_full_unstemmed AMPK regulates cell shape of cardiomyocytes by modulating turnover of microtubules through CLIP‐170
title_short AMPK regulates cell shape of cardiomyocytes by modulating turnover of microtubules through CLIP‐170
title_sort ampk regulates cell shape of cardiomyocytes by modulating turnover of microtubules through clip‐170
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7788454/
https://www.ncbi.nlm.nih.gov/pubmed/33251722
http://dx.doi.org/10.15252/embr.202050949
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