Cargando…

Sarcomeres Morphology and Z-Line Arrangement Disarray Induced by Ventricular Premature Contractions through the Rac2/Cofilin Pathway

The most common ventricular premature contractions (VPCs) originate from the right ventricular outflow tract (RVOT), but the molecular mechanisms of altered cytoskeletons of VPC-induced cardiomyopathy remain unexplored. We created a RVOT bigeminy VPC pig model (n = 6 in each group). Echocardiography...

Descripción completa

Detalles Bibliográficos
Autores principales: Lin, Yu-Sheng, Chang, Tzu-Hao, Ho, Wan-Chun, Chang, Shun-Fu, Chen, Yung-Lung, Chang, Shih-Tai, Chen, Huang-Chung, Pan, Kuo-Li, Chen, Mien-Cheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8541677/
https://www.ncbi.nlm.nih.gov/pubmed/34681906
http://dx.doi.org/10.3390/ijms222011244
_version_ 1784589289293611008
author Lin, Yu-Sheng
Chang, Tzu-Hao
Ho, Wan-Chun
Chang, Shun-Fu
Chen, Yung-Lung
Chang, Shih-Tai
Chen, Huang-Chung
Pan, Kuo-Li
Chen, Mien-Cheng
author_facet Lin, Yu-Sheng
Chang, Tzu-Hao
Ho, Wan-Chun
Chang, Shun-Fu
Chen, Yung-Lung
Chang, Shih-Tai
Chen, Huang-Chung
Pan, Kuo-Li
Chen, Mien-Cheng
author_sort Lin, Yu-Sheng
collection PubMed
description The most common ventricular premature contractions (VPCs) originate from the right ventricular outflow tract (RVOT), but the molecular mechanisms of altered cytoskeletons of VPC-induced cardiomyopathy remain unexplored. We created a RVOT bigeminy VPC pig model (n = 6 in each group). Echocardiography was performed. The histopathological alternations in the LV myocardium were analyzed, and next generation sequencing (NGS) and functional enrichment analyses were employed to identify the differentially expressed genes (DEGs) responsible for the histopathological alternations. Finally, a cell silencing model was used to confirm the key regulatory gene and pathway. VPC pigs had increased LV diameters in the 6-month follow-up period. A histological study showed more actin cytoskeleton disorganization and actin accumulation over intercalated disc, Z-line arrangement disarray, increased β-catenin expression, and cardiomyocyte enlargement in the LV myocardium of the VPC pigs compared to the control pigs. The NGS study showed actin cytoskeleton signaling, RhoGDI signaling, and signaling by Rho Family GTPases and ILK Signaling presented z-scores with same activation states. The expressions of Rac family small GTPase 2 (Rac2), the p-cofilin/cofilin ratio, and the F-actin/G-actin ratio were downregulated in the VPC group compared to the control group. Moreover, the intensity and number of actin filaments per cardiomyocyte were significantly decreased by Rac2 siRNA in the cell silencing model. Therefore, the Rac2/cofilin pathway was found to play a crucial role in the sarcomere morphology and Z-line arrangement disarray induced by RVOT bigeminy VPCs.
format Online
Article
Text
id pubmed-8541677
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-85416772021-10-24 Sarcomeres Morphology and Z-Line Arrangement Disarray Induced by Ventricular Premature Contractions through the Rac2/Cofilin Pathway Lin, Yu-Sheng Chang, Tzu-Hao Ho, Wan-Chun Chang, Shun-Fu Chen, Yung-Lung Chang, Shih-Tai Chen, Huang-Chung Pan, Kuo-Li Chen, Mien-Cheng Int J Mol Sci Article The most common ventricular premature contractions (VPCs) originate from the right ventricular outflow tract (RVOT), but the molecular mechanisms of altered cytoskeletons of VPC-induced cardiomyopathy remain unexplored. We created a RVOT bigeminy VPC pig model (n = 6 in each group). Echocardiography was performed. The histopathological alternations in the LV myocardium were analyzed, and next generation sequencing (NGS) and functional enrichment analyses were employed to identify the differentially expressed genes (DEGs) responsible for the histopathological alternations. Finally, a cell silencing model was used to confirm the key regulatory gene and pathway. VPC pigs had increased LV diameters in the 6-month follow-up period. A histological study showed more actin cytoskeleton disorganization and actin accumulation over intercalated disc, Z-line arrangement disarray, increased β-catenin expression, and cardiomyocyte enlargement in the LV myocardium of the VPC pigs compared to the control pigs. The NGS study showed actin cytoskeleton signaling, RhoGDI signaling, and signaling by Rho Family GTPases and ILK Signaling presented z-scores with same activation states. The expressions of Rac family small GTPase 2 (Rac2), the p-cofilin/cofilin ratio, and the F-actin/G-actin ratio were downregulated in the VPC group compared to the control group. Moreover, the intensity and number of actin filaments per cardiomyocyte were significantly decreased by Rac2 siRNA in the cell silencing model. Therefore, the Rac2/cofilin pathway was found to play a crucial role in the sarcomere morphology and Z-line arrangement disarray induced by RVOT bigeminy VPCs. MDPI 2021-10-18 /pmc/articles/PMC8541677/ /pubmed/34681906 http://dx.doi.org/10.3390/ijms222011244 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lin, Yu-Sheng
Chang, Tzu-Hao
Ho, Wan-Chun
Chang, Shun-Fu
Chen, Yung-Lung
Chang, Shih-Tai
Chen, Huang-Chung
Pan, Kuo-Li
Chen, Mien-Cheng
Sarcomeres Morphology and Z-Line Arrangement Disarray Induced by Ventricular Premature Contractions through the Rac2/Cofilin Pathway
title Sarcomeres Morphology and Z-Line Arrangement Disarray Induced by Ventricular Premature Contractions through the Rac2/Cofilin Pathway
title_full Sarcomeres Morphology and Z-Line Arrangement Disarray Induced by Ventricular Premature Contractions through the Rac2/Cofilin Pathway
title_fullStr Sarcomeres Morphology and Z-Line Arrangement Disarray Induced by Ventricular Premature Contractions through the Rac2/Cofilin Pathway
title_full_unstemmed Sarcomeres Morphology and Z-Line Arrangement Disarray Induced by Ventricular Premature Contractions through the Rac2/Cofilin Pathway
title_short Sarcomeres Morphology and Z-Line Arrangement Disarray Induced by Ventricular Premature Contractions through the Rac2/Cofilin Pathway
title_sort sarcomeres morphology and z-line arrangement disarray induced by ventricular premature contractions through the rac2/cofilin pathway
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8541677/
https://www.ncbi.nlm.nih.gov/pubmed/34681906
http://dx.doi.org/10.3390/ijms222011244
work_keys_str_mv AT linyusheng sarcomeresmorphologyandzlinearrangementdisarrayinducedbyventricularprematurecontractionsthroughtherac2cofilinpathway
AT changtzuhao sarcomeresmorphologyandzlinearrangementdisarrayinducedbyventricularprematurecontractionsthroughtherac2cofilinpathway
AT howanchun sarcomeresmorphologyandzlinearrangementdisarrayinducedbyventricularprematurecontractionsthroughtherac2cofilinpathway
AT changshunfu sarcomeresmorphologyandzlinearrangementdisarrayinducedbyventricularprematurecontractionsthroughtherac2cofilinpathway
AT chenyunglung sarcomeresmorphologyandzlinearrangementdisarrayinducedbyventricularprematurecontractionsthroughtherac2cofilinpathway
AT changshihtai sarcomeresmorphologyandzlinearrangementdisarrayinducedbyventricularprematurecontractionsthroughtherac2cofilinpathway
AT chenhuangchung sarcomeresmorphologyandzlinearrangementdisarrayinducedbyventricularprematurecontractionsthroughtherac2cofilinpathway
AT pankuoli sarcomeresmorphologyandzlinearrangementdisarrayinducedbyventricularprematurecontractionsthroughtherac2cofilinpathway
AT chenmiencheng sarcomeresmorphologyandzlinearrangementdisarrayinducedbyventricularprematurecontractionsthroughtherac2cofilinpathway