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FXR1 regulates vascular smooth muscle cell cytoskeleton, VSMC contractility, and blood pressure by multiple mechanisms

Appropriate cytoskeletal organization is essential for vascular smooth muscle cell (VSMC) conditions such as hypertension. This study identifies FXR1 as a key protein linking cytoskeletal dynamics with mRNA stability. RNA immunoprecipitation sequencing (RIP-seq) in human VSMCs identifies that FXR1 b...

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Autores principales: St. Paul, Amanda, Corbett, Cali, Peluzzo, Amanda, Kelemen, Sheri, Okune, Rachael, Haines, Dale S., Preston, Kyle, Eguchi, Satoru, Autieri, Michael V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10564969/
https://www.ncbi.nlm.nih.gov/pubmed/37043351
http://dx.doi.org/10.1016/j.celrep.2023.112381
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author St. Paul, Amanda
Corbett, Cali
Peluzzo, Amanda
Kelemen, Sheri
Okune, Rachael
Haines, Dale S.
Preston, Kyle
Eguchi, Satoru
Autieri, Michael V.
author_facet St. Paul, Amanda
Corbett, Cali
Peluzzo, Amanda
Kelemen, Sheri
Okune, Rachael
Haines, Dale S.
Preston, Kyle
Eguchi, Satoru
Autieri, Michael V.
author_sort St. Paul, Amanda
collection PubMed
description Appropriate cytoskeletal organization is essential for vascular smooth muscle cell (VSMC) conditions such as hypertension. This study identifies FXR1 as a key protein linking cytoskeletal dynamics with mRNA stability. RNA immunoprecipitation sequencing (RIP-seq) in human VSMCs identifies that FXR1 binds to mRNA associated with cytoskeletal dynamics, and FXR1 depletion decreases their mRNA stability. FXR1 binds and regulates actin polymerization. Mass spectrometry identifies that FXR1 interacts with cytoskeletal proteins, particularly Arp2, a protein crucial for VSMC contraction, and CYFIP1, a WASP family verprolin-homologous protein (WAVE) regulatory complex (WRC) protein that links mRNA processing with actin polymerization. Depletion of FXR1 decreases the cytoskeletal processes of adhesion, migration, contraction, and GTPase activation. Using telemetry, conditional FXR1(SMC/SMC) mice have decreased blood pressure and an abundance of cytoskeletal-associated transcripts. This indicates that FXR1 is a muscle-enhanced WRC modulatory protein that regulates VSMC cytoskeletal dynamics by regulation of cytoskeletal mRNA stability and actin polymerization and cytoskeletal protein-protein interactions, which can regulate blood pressure.
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spelling pubmed-105649692023-10-23 FXR1 regulates vascular smooth muscle cell cytoskeleton, VSMC contractility, and blood pressure by multiple mechanisms St. Paul, Amanda Corbett, Cali Peluzzo, Amanda Kelemen, Sheri Okune, Rachael Haines, Dale S. Preston, Kyle Eguchi, Satoru Autieri, Michael V. Cell Rep Article Appropriate cytoskeletal organization is essential for vascular smooth muscle cell (VSMC) conditions such as hypertension. This study identifies FXR1 as a key protein linking cytoskeletal dynamics with mRNA stability. RNA immunoprecipitation sequencing (RIP-seq) in human VSMCs identifies that FXR1 binds to mRNA associated with cytoskeletal dynamics, and FXR1 depletion decreases their mRNA stability. FXR1 binds and regulates actin polymerization. Mass spectrometry identifies that FXR1 interacts with cytoskeletal proteins, particularly Arp2, a protein crucial for VSMC contraction, and CYFIP1, a WASP family verprolin-homologous protein (WAVE) regulatory complex (WRC) protein that links mRNA processing with actin polymerization. Depletion of FXR1 decreases the cytoskeletal processes of adhesion, migration, contraction, and GTPase activation. Using telemetry, conditional FXR1(SMC/SMC) mice have decreased blood pressure and an abundance of cytoskeletal-associated transcripts. This indicates that FXR1 is a muscle-enhanced WRC modulatory protein that regulates VSMC cytoskeletal dynamics by regulation of cytoskeletal mRNA stability and actin polymerization and cytoskeletal protein-protein interactions, which can regulate blood pressure. 2023-04-25 2023-04-11 /pmc/articles/PMC10564969/ /pubmed/37043351 http://dx.doi.org/10.1016/j.celrep.2023.112381 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) ).
spellingShingle Article
St. Paul, Amanda
Corbett, Cali
Peluzzo, Amanda
Kelemen, Sheri
Okune, Rachael
Haines, Dale S.
Preston, Kyle
Eguchi, Satoru
Autieri, Michael V.
FXR1 regulates vascular smooth muscle cell cytoskeleton, VSMC contractility, and blood pressure by multiple mechanisms
title FXR1 regulates vascular smooth muscle cell cytoskeleton, VSMC contractility, and blood pressure by multiple mechanisms
title_full FXR1 regulates vascular smooth muscle cell cytoskeleton, VSMC contractility, and blood pressure by multiple mechanisms
title_fullStr FXR1 regulates vascular smooth muscle cell cytoskeleton, VSMC contractility, and blood pressure by multiple mechanisms
title_full_unstemmed FXR1 regulates vascular smooth muscle cell cytoskeleton, VSMC contractility, and blood pressure by multiple mechanisms
title_short FXR1 regulates vascular smooth muscle cell cytoskeleton, VSMC contractility, and blood pressure by multiple mechanisms
title_sort fxr1 regulates vascular smooth muscle cell cytoskeleton, vsmc contractility, and blood pressure by multiple mechanisms
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10564969/
https://www.ncbi.nlm.nih.gov/pubmed/37043351
http://dx.doi.org/10.1016/j.celrep.2023.112381
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