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MicroRNA‐574 regulates FAM210A expression and influences pathological cardiac remodeling

Aberrant expression of mitochondrial proteins impairs cardiac function and causes heart disease. The mechanism of regulation of mitochondria encoded protein expression during cardiac disease, however, remains underexplored. Here, we show that multiple pathogenic cardiac stressors induce the expressi...

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Autores principales: Wu, Jiangbin, Venkata Subbaiah, Kadiam C, Jiang, Feng, Hedaya, Omar, Mohan, Amy, Yang, Tingting, Welle, Kevin, Ghaemmaghami, Sina, Tang, Wai Hong Wilson, Small, Eric, Yan, Chen, Yao, Peng
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/PMC7863409/
https://www.ncbi.nlm.nih.gov/pubmed/33369227
http://dx.doi.org/10.15252/emmm.202012710
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author Wu, Jiangbin
Venkata Subbaiah, Kadiam C
Jiang, Feng
Hedaya, Omar
Mohan, Amy
Yang, Tingting
Welle, Kevin
Ghaemmaghami, Sina
Tang, Wai Hong Wilson
Small, Eric
Yan, Chen
Yao, Peng
author_facet Wu, Jiangbin
Venkata Subbaiah, Kadiam C
Jiang, Feng
Hedaya, Omar
Mohan, Amy
Yang, Tingting
Welle, Kevin
Ghaemmaghami, Sina
Tang, Wai Hong Wilson
Small, Eric
Yan, Chen
Yao, Peng
author_sort Wu, Jiangbin
collection PubMed
description Aberrant expression of mitochondrial proteins impairs cardiac function and causes heart disease. The mechanism of regulation of mitochondria encoded protein expression during cardiac disease, however, remains underexplored. Here, we show that multiple pathogenic cardiac stressors induce the expression of miR‐574 guide and passenger strands (miR‐574‐5p/3p) in both humans and mice. miR‐574 knockout mice exhibit severe cardiac disorder under different pathogenic cardiac stresses while miR‐574‐5p/3p mimics that are delivered systematically using nanoparticles reduce cardiac pathogenesis under disease insults. Transcriptomic analysis of miR‐574‐null hearts uncovers family with sequence similarity 210 member A (FAM210A) as a common target mRNA of miR‐574‐5p and miR‐574‐3p. The interactome capture analysis suggests that FAM210A interacts with mitochondrial translation elongation factor EF‐Tu. Manipulating miR‐574‐5p/3p or FAM210A expression changes the protein expression of mitochondrial‐encoded electron transport chain (ETC) genes but not nuclear‐encoded mitochondrial ETC genes in both human AC16 cardiomyocyte cells and miR‐574‐null murine hearts. Together, we discovered that miR‐574 regulates FAM210A expression and modulates mitochondrial‐encoded protein expression, which may influence cardiac remodeling in heart failure.
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spelling pubmed-78634092021-02-16 MicroRNA‐574 regulates FAM210A expression and influences pathological cardiac remodeling Wu, Jiangbin Venkata Subbaiah, Kadiam C Jiang, Feng Hedaya, Omar Mohan, Amy Yang, Tingting Welle, Kevin Ghaemmaghami, Sina Tang, Wai Hong Wilson Small, Eric Yan, Chen Yao, Peng EMBO Mol Med Articles Aberrant expression of mitochondrial proteins impairs cardiac function and causes heart disease. The mechanism of regulation of mitochondria encoded protein expression during cardiac disease, however, remains underexplored. Here, we show that multiple pathogenic cardiac stressors induce the expression of miR‐574 guide and passenger strands (miR‐574‐5p/3p) in both humans and mice. miR‐574 knockout mice exhibit severe cardiac disorder under different pathogenic cardiac stresses while miR‐574‐5p/3p mimics that are delivered systematically using nanoparticles reduce cardiac pathogenesis under disease insults. Transcriptomic analysis of miR‐574‐null hearts uncovers family with sequence similarity 210 member A (FAM210A) as a common target mRNA of miR‐574‐5p and miR‐574‐3p. The interactome capture analysis suggests that FAM210A interacts with mitochondrial translation elongation factor EF‐Tu. Manipulating miR‐574‐5p/3p or FAM210A expression changes the protein expression of mitochondrial‐encoded electron transport chain (ETC) genes but not nuclear‐encoded mitochondrial ETC genes in both human AC16 cardiomyocyte cells and miR‐574‐null murine hearts. Together, we discovered that miR‐574 regulates FAM210A expression and modulates mitochondrial‐encoded protein expression, which may influence cardiac remodeling in heart failure. John Wiley and Sons Inc. 2020-12-28 2021-02-05 /pmc/articles/PMC7863409/ /pubmed/33369227 http://dx.doi.org/10.15252/emmm.202012710 Text en © 2020 The Authors. Published under the terms of the CC BY 4.0 license 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 Articles
Wu, Jiangbin
Venkata Subbaiah, Kadiam C
Jiang, Feng
Hedaya, Omar
Mohan, Amy
Yang, Tingting
Welle, Kevin
Ghaemmaghami, Sina
Tang, Wai Hong Wilson
Small, Eric
Yan, Chen
Yao, Peng
MicroRNA‐574 regulates FAM210A expression and influences pathological cardiac remodeling
title MicroRNA‐574 regulates FAM210A expression and influences pathological cardiac remodeling
title_full MicroRNA‐574 regulates FAM210A expression and influences pathological cardiac remodeling
title_fullStr MicroRNA‐574 regulates FAM210A expression and influences pathological cardiac remodeling
title_full_unstemmed MicroRNA‐574 regulates FAM210A expression and influences pathological cardiac remodeling
title_short MicroRNA‐574 regulates FAM210A expression and influences pathological cardiac remodeling
title_sort microrna‐574 regulates fam210a expression and influences pathological cardiac remodeling
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7863409/
https://www.ncbi.nlm.nih.gov/pubmed/33369227
http://dx.doi.org/10.15252/emmm.202012710
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