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Preventing Cholesterol-Induced Perk (Protein Kinase RNA-Like Endoplasmic Reticulum Kinase) Signaling in Smooth Muscle Cells Blocks Atherosclerotic Plaque Formation

Vascular smooth muscle cells (SMCs) undergo complex phenotypic modulation with atherosclerotic plaque formation in hyperlipidemic mice, which is characterized by de-differentiation and heterogeneous increases in the expression of macrophage, fibroblast, osteogenic, and stem cell markers. An increase...

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Autores principales: Chattopadhyay, Abhijnan, Guan (关蒲骏), Pujun, Majumder, Suravi, Kaw, Kaveeta, Zhou (周桢), Zhen, Zhang, Chen, Prakash, Siddharth K., Kaw, Anita, Buja, L. Maximillian, Kwartler, Callie S., Milewicz, Dianna M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Lippincott Williams & Wilkins 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9311463/
https://www.ncbi.nlm.nih.gov/pubmed/35708026
http://dx.doi.org/10.1161/ATVBAHA.121.317451
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author Chattopadhyay, Abhijnan
Guan (关蒲骏), Pujun
Majumder, Suravi
Kaw, Kaveeta
Zhou (周桢), Zhen
Zhang, Chen
Prakash, Siddharth K.
Kaw, Anita
Buja, L. Maximillian
Kwartler, Callie S.
Milewicz, Dianna M.
author_facet Chattopadhyay, Abhijnan
Guan (关蒲骏), Pujun
Majumder, Suravi
Kaw, Kaveeta
Zhou (周桢), Zhen
Zhang, Chen
Prakash, Siddharth K.
Kaw, Anita
Buja, L. Maximillian
Kwartler, Callie S.
Milewicz, Dianna M.
author_sort Chattopadhyay, Abhijnan
collection PubMed
description Vascular smooth muscle cells (SMCs) undergo complex phenotypic modulation with atherosclerotic plaque formation in hyperlipidemic mice, which is characterized by de-differentiation and heterogeneous increases in the expression of macrophage, fibroblast, osteogenic, and stem cell markers. An increase of cellular cholesterol in SMCs triggers similar phenotypic changes in vitro with exposure to free cholesterol due to cholesterol entering the endoplasmic reticulum, triggering endoplasmic reticulum stress and activating Perk (protein kinase RNA-like endoplasmic reticulum kinase) signaling. METHODS: We generated an SMC-specific Perk knockout mouse model, induced hyperlipidemia in the mice by AAV-PCSK9(DY) injection, and subjected them to a high-fat diet. We then assessed atherosclerotic plaque formation and performed single-cell transcriptomic studies using aortic tissue from these mice. RESULTS: SMC-specific deletion of Perk reduces atherosclerotic plaque formation in male hyperlipidemic mice by 80%. Single-cell transcriptomic data identify 2 clusters of modulated SMCs in hyperlipidemic mice, one of which is absent when Perk is deleted in SMCs. The 2 modulated SMC clusters have significant overlap of transcriptional changes, but the Perk-dependent cluster uniquely shows a global decrease in the number of transcripts. SMC-specific Perk deletion also prevents migration of both contractile and modulated SMCs from the medial layer of the aorta. CONCLUSIONS: Our results indicate that hypercholesterolemia drives both Perk-dependent and Perk-independent SMC modulation and that deficiency of Perk significantly blocks atherosclerotic plaque formation.
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spelling pubmed-93114632022-08-02 Preventing Cholesterol-Induced Perk (Protein Kinase RNA-Like Endoplasmic Reticulum Kinase) Signaling in Smooth Muscle Cells Blocks Atherosclerotic Plaque Formation Chattopadhyay, Abhijnan Guan (关蒲骏), Pujun Majumder, Suravi Kaw, Kaveeta Zhou (周桢), Zhen Zhang, Chen Prakash, Siddharth K. Kaw, Anita Buja, L. Maximillian Kwartler, Callie S. Milewicz, Dianna M. Arterioscler Thromb Vasc Biol Basic Sciences Vascular smooth muscle cells (SMCs) undergo complex phenotypic modulation with atherosclerotic plaque formation in hyperlipidemic mice, which is characterized by de-differentiation and heterogeneous increases in the expression of macrophage, fibroblast, osteogenic, and stem cell markers. An increase of cellular cholesterol in SMCs triggers similar phenotypic changes in vitro with exposure to free cholesterol due to cholesterol entering the endoplasmic reticulum, triggering endoplasmic reticulum stress and activating Perk (protein kinase RNA-like endoplasmic reticulum kinase) signaling. METHODS: We generated an SMC-specific Perk knockout mouse model, induced hyperlipidemia in the mice by AAV-PCSK9(DY) injection, and subjected them to a high-fat diet. We then assessed atherosclerotic plaque formation and performed single-cell transcriptomic studies using aortic tissue from these mice. RESULTS: SMC-specific deletion of Perk reduces atherosclerotic plaque formation in male hyperlipidemic mice by 80%. Single-cell transcriptomic data identify 2 clusters of modulated SMCs in hyperlipidemic mice, one of which is absent when Perk is deleted in SMCs. The 2 modulated SMC clusters have significant overlap of transcriptional changes, but the Perk-dependent cluster uniquely shows a global decrease in the number of transcripts. SMC-specific Perk deletion also prevents migration of both contractile and modulated SMCs from the medial layer of the aorta. CONCLUSIONS: Our results indicate that hypercholesterolemia drives both Perk-dependent and Perk-independent SMC modulation and that deficiency of Perk significantly blocks atherosclerotic plaque formation. Lippincott Williams & Wilkins 2022-06-16 2022-08 /pmc/articles/PMC9311463/ /pubmed/35708026 http://dx.doi.org/10.1161/ATVBAHA.121.317451 Text en © 2022 The Authors. https://creativecommons.org/licenses/by-nc-nd/4.0/Arteriosclerosis, Thrombosis, and Vascular Biology is published on behalf of the American Heart Association, Inc., by Wolters Kluwer Health, Inc. This is an open access article under the terms of the Creative Commons Attribution Non-Commercial-NoDerivs (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use, distribution, and reproduction in any medium, provided that the original work is properly cited, the use is noncommercial, and no modifications or adaptations are made.
spellingShingle Basic Sciences
Chattopadhyay, Abhijnan
Guan (关蒲骏), Pujun
Majumder, Suravi
Kaw, Kaveeta
Zhou (周桢), Zhen
Zhang, Chen
Prakash, Siddharth K.
Kaw, Anita
Buja, L. Maximillian
Kwartler, Callie S.
Milewicz, Dianna M.
Preventing Cholesterol-Induced Perk (Protein Kinase RNA-Like Endoplasmic Reticulum Kinase) Signaling in Smooth Muscle Cells Blocks Atherosclerotic Plaque Formation
title Preventing Cholesterol-Induced Perk (Protein Kinase RNA-Like Endoplasmic Reticulum Kinase) Signaling in Smooth Muscle Cells Blocks Atherosclerotic Plaque Formation
title_full Preventing Cholesterol-Induced Perk (Protein Kinase RNA-Like Endoplasmic Reticulum Kinase) Signaling in Smooth Muscle Cells Blocks Atherosclerotic Plaque Formation
title_fullStr Preventing Cholesterol-Induced Perk (Protein Kinase RNA-Like Endoplasmic Reticulum Kinase) Signaling in Smooth Muscle Cells Blocks Atherosclerotic Plaque Formation
title_full_unstemmed Preventing Cholesterol-Induced Perk (Protein Kinase RNA-Like Endoplasmic Reticulum Kinase) Signaling in Smooth Muscle Cells Blocks Atherosclerotic Plaque Formation
title_short Preventing Cholesterol-Induced Perk (Protein Kinase RNA-Like Endoplasmic Reticulum Kinase) Signaling in Smooth Muscle Cells Blocks Atherosclerotic Plaque Formation
title_sort preventing cholesterol-induced perk (protein kinase rna-like endoplasmic reticulum kinase) signaling in smooth muscle cells blocks atherosclerotic plaque formation
topic Basic Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9311463/
https://www.ncbi.nlm.nih.gov/pubmed/35708026
http://dx.doi.org/10.1161/ATVBAHA.121.317451
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