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Dystrophin involvement in peripheral circadian SRF signalling

Absence of dystrophin, an essential sarcolemmal protein required for muscle contraction, leads to the devastating muscle-wasting disease Duchenne muscular dystrophy. Dystrophin has an actin-binding domain, which binds and stabilises filamentous-(F)-actin, an integral component of the RhoA-actin-seru...

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Autores principales: Betts, Corinne A, Jagannath, Aarti, van Westering, Tirsa LE, Bowerman, Melissa, Banerjee, Subhashis, Meng, Jinhong, Falzarano, Maria Sofia, Cravo, Lara, McClorey, Graham, Meijboom, Katharina E, Bhomra, Amarjit, Lim, Wooi Fang, Rinaldi, Carlo, Counsell, John R, Chwalenia, Katarzyna, O’Donovan, Elizabeth, Saleh, Amer F, Gait, Michael J, Morgan, Jennifer E, Ferlini, Alessandra, Foster, Russell G, Wood, Matthew JA
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Life Science Alliance LLC 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8363758/
https://www.ncbi.nlm.nih.gov/pubmed/34389686
http://dx.doi.org/10.26508/lsa.202101014
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author Betts, Corinne A
Jagannath, Aarti
van Westering, Tirsa LE
Bowerman, Melissa
Banerjee, Subhashis
Meng, Jinhong
Falzarano, Maria Sofia
Cravo, Lara
McClorey, Graham
Meijboom, Katharina E
Bhomra, Amarjit
Lim, Wooi Fang
Rinaldi, Carlo
Counsell, John R
Chwalenia, Katarzyna
O’Donovan, Elizabeth
Saleh, Amer F
Gait, Michael J
Morgan, Jennifer E
Ferlini, Alessandra
Foster, Russell G
Wood, Matthew JA
author_facet Betts, Corinne A
Jagannath, Aarti
van Westering, Tirsa LE
Bowerman, Melissa
Banerjee, Subhashis
Meng, Jinhong
Falzarano, Maria Sofia
Cravo, Lara
McClorey, Graham
Meijboom, Katharina E
Bhomra, Amarjit
Lim, Wooi Fang
Rinaldi, Carlo
Counsell, John R
Chwalenia, Katarzyna
O’Donovan, Elizabeth
Saleh, Amer F
Gait, Michael J
Morgan, Jennifer E
Ferlini, Alessandra
Foster, Russell G
Wood, Matthew JA
author_sort Betts, Corinne A
collection PubMed
description Absence of dystrophin, an essential sarcolemmal protein required for muscle contraction, leads to the devastating muscle-wasting disease Duchenne muscular dystrophy. Dystrophin has an actin-binding domain, which binds and stabilises filamentous-(F)-actin, an integral component of the RhoA-actin-serum-response-factor-(SRF) pathway. This pathway plays a crucial role in circadian signalling, whereby the suprachiasmatic nucleus (SCN) transmits cues to peripheral tissues, activating SRF and transcription of clock-target genes. Given dystrophin binds F-actin and disturbed SRF-signalling disrupts clock entrainment, we hypothesised dystrophin loss causes circadian deficits. We show for the first time alterations in the RhoA-actin-SRF-signalling pathway, in dystrophin-deficient myotubes and dystrophic mouse models. Specifically, we demonstrate reduced F/G-actin ratios, altered MRTF levels, dysregulated core-clock and downstream target-genes, and down-regulation of key circadian genes in muscle biopsies from Duchenne patients harbouring an array of mutations. Furthermore, we show dystrophin is absent in the SCN of dystrophic mice which display disrupted circadian locomotor behaviour, indicative of disrupted SCN signalling. Therefore, dystrophin is an important component of the RhoA-actin-SRF pathway and novel mediator of circadian signalling in peripheral tissues, loss of which leads to circadian dysregulation.
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spelling pubmed-83637582021-08-24 Dystrophin involvement in peripheral circadian SRF signalling Betts, Corinne A Jagannath, Aarti van Westering, Tirsa LE Bowerman, Melissa Banerjee, Subhashis Meng, Jinhong Falzarano, Maria Sofia Cravo, Lara McClorey, Graham Meijboom, Katharina E Bhomra, Amarjit Lim, Wooi Fang Rinaldi, Carlo Counsell, John R Chwalenia, Katarzyna O’Donovan, Elizabeth Saleh, Amer F Gait, Michael J Morgan, Jennifer E Ferlini, Alessandra Foster, Russell G Wood, Matthew JA Life Sci Alliance Research Articles Absence of dystrophin, an essential sarcolemmal protein required for muscle contraction, leads to the devastating muscle-wasting disease Duchenne muscular dystrophy. Dystrophin has an actin-binding domain, which binds and stabilises filamentous-(F)-actin, an integral component of the RhoA-actin-serum-response-factor-(SRF) pathway. This pathway plays a crucial role in circadian signalling, whereby the suprachiasmatic nucleus (SCN) transmits cues to peripheral tissues, activating SRF and transcription of clock-target genes. Given dystrophin binds F-actin and disturbed SRF-signalling disrupts clock entrainment, we hypothesised dystrophin loss causes circadian deficits. We show for the first time alterations in the RhoA-actin-SRF-signalling pathway, in dystrophin-deficient myotubes and dystrophic mouse models. Specifically, we demonstrate reduced F/G-actin ratios, altered MRTF levels, dysregulated core-clock and downstream target-genes, and down-regulation of key circadian genes in muscle biopsies from Duchenne patients harbouring an array of mutations. Furthermore, we show dystrophin is absent in the SCN of dystrophic mice which display disrupted circadian locomotor behaviour, indicative of disrupted SCN signalling. Therefore, dystrophin is an important component of the RhoA-actin-SRF pathway and novel mediator of circadian signalling in peripheral tissues, loss of which leads to circadian dysregulation. Life Science Alliance LLC 2021-08-13 /pmc/articles/PMC8363758/ /pubmed/34389686 http://dx.doi.org/10.26508/lsa.202101014 Text en © 2021 Betts et al. https://creativecommons.org/licenses/by/4.0/This article is available under a Creative Commons License (Attribution 4.0 International, as described at https://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Articles
Betts, Corinne A
Jagannath, Aarti
van Westering, Tirsa LE
Bowerman, Melissa
Banerjee, Subhashis
Meng, Jinhong
Falzarano, Maria Sofia
Cravo, Lara
McClorey, Graham
Meijboom, Katharina E
Bhomra, Amarjit
Lim, Wooi Fang
Rinaldi, Carlo
Counsell, John R
Chwalenia, Katarzyna
O’Donovan, Elizabeth
Saleh, Amer F
Gait, Michael J
Morgan, Jennifer E
Ferlini, Alessandra
Foster, Russell G
Wood, Matthew JA
Dystrophin involvement in peripheral circadian SRF signalling
title Dystrophin involvement in peripheral circadian SRF signalling
title_full Dystrophin involvement in peripheral circadian SRF signalling
title_fullStr Dystrophin involvement in peripheral circadian SRF signalling
title_full_unstemmed Dystrophin involvement in peripheral circadian SRF signalling
title_short Dystrophin involvement in peripheral circadian SRF signalling
title_sort dystrophin involvement in peripheral circadian srf signalling
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8363758/
https://www.ncbi.nlm.nih.gov/pubmed/34389686
http://dx.doi.org/10.26508/lsa.202101014
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