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Molecular phenotyping and functional assessment of smooth muscle-like cells with pathogenic variants in aneurysm genes ACTA2, MYH11, SMAD3 and FBN1

Aortic aneurysms (AAs) are pathological dilatations of the aorta. Pathogenic variants in genes encoding for proteins of the contractile machinery of vascular smooth muscle cells (VSMCs), genes encoding proteins of the transforming growth factor beta signaling pathway and extracellular matrix (ECM) h...

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Autores principales: Burger, Joyce, Bogunovic, Natalija, de Wagenaar, Nathalie P, Liu, Hui, van Vliet, Nicole, IJpma, Arne, Maugeri, Alessandra, Micha, Dimitra, Verhagen, Hence J M, ten Hagen, Timo L M, Majoor-Krakauer, Danielle, van der Pluijm, Ingrid, Essers, Jeroen, Yeung, Kak K
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8600030/
https://www.ncbi.nlm.nih.gov/pubmed/34244757
http://dx.doi.org/10.1093/hmg/ddab190
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author Burger, Joyce
Bogunovic, Natalija
de Wagenaar, Nathalie P
Liu, Hui
van Vliet, Nicole
IJpma, Arne
Maugeri, Alessandra
Micha, Dimitra
Verhagen, Hence J M
ten Hagen, Timo L M
Majoor-Krakauer, Danielle
van der Pluijm, Ingrid
Essers, Jeroen
Yeung, Kak K
author_facet Burger, Joyce
Bogunovic, Natalija
de Wagenaar, Nathalie P
Liu, Hui
van Vliet, Nicole
IJpma, Arne
Maugeri, Alessandra
Micha, Dimitra
Verhagen, Hence J M
ten Hagen, Timo L M
Majoor-Krakauer, Danielle
van der Pluijm, Ingrid
Essers, Jeroen
Yeung, Kak K
author_sort Burger, Joyce
collection PubMed
description Aortic aneurysms (AAs) are pathological dilatations of the aorta. Pathogenic variants in genes encoding for proteins of the contractile machinery of vascular smooth muscle cells (VSMCs), genes encoding proteins of the transforming growth factor beta signaling pathway and extracellular matrix (ECM) homeostasis play a role in the weakening of the aortic wall. These variants affect the functioning of VSMC, the predominant cell type in the aorta. Many variants have unknown clinical significance, with unknown consequences on VSMC function and AA development. Our goal was to develop functional assays that show the effects of pathogenic variants in aneurysm-related genes. We used a previously developed fibroblast transdifferentiation protocol to induce VSMC-like cells, which are used for all assays. We compared transdifferentiated VSMC-like cells of patients with a pathogenic variant in genes encoding for components of VSMC contraction (ACTA2, MYH11), transforming growth factor beta (TGFβ) signaling (SMAD3) and a dominant negative (DN) and two haploinsufficient variants in the ECM elastic laminae (FBN1) to those of healthy controls. The transdifferentiation efficiency, structural integrity of the cytoskeleton, TGFβ signaling profile, migration velocity and maximum contraction were measured. Transdifferentiation efficiency was strongly reduced in SMAD3 and FBN1 DN patients. ACTA2 and FBN1 DN cells showed a decrease in SMAD2 phosphorylation. Migration velocity was impaired for ACTA2 and MYH11 cells. ACTA2 cells showed reduced contractility. In conclusion, these assays for showing effects of pathogenic variants may be promising tools to help reclassification of variants of unknown clinical significance in AA-related genes.
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spelling pubmed-86000302021-11-18 Molecular phenotyping and functional assessment of smooth muscle-like cells with pathogenic variants in aneurysm genes ACTA2, MYH11, SMAD3 and FBN1 Burger, Joyce Bogunovic, Natalija de Wagenaar, Nathalie P Liu, Hui van Vliet, Nicole IJpma, Arne Maugeri, Alessandra Micha, Dimitra Verhagen, Hence J M ten Hagen, Timo L M Majoor-Krakauer, Danielle van der Pluijm, Ingrid Essers, Jeroen Yeung, Kak K Hum Mol Genet General Article Aortic aneurysms (AAs) are pathological dilatations of the aorta. Pathogenic variants in genes encoding for proteins of the contractile machinery of vascular smooth muscle cells (VSMCs), genes encoding proteins of the transforming growth factor beta signaling pathway and extracellular matrix (ECM) homeostasis play a role in the weakening of the aortic wall. These variants affect the functioning of VSMC, the predominant cell type in the aorta. Many variants have unknown clinical significance, with unknown consequences on VSMC function and AA development. Our goal was to develop functional assays that show the effects of pathogenic variants in aneurysm-related genes. We used a previously developed fibroblast transdifferentiation protocol to induce VSMC-like cells, which are used for all assays. We compared transdifferentiated VSMC-like cells of patients with a pathogenic variant in genes encoding for components of VSMC contraction (ACTA2, MYH11), transforming growth factor beta (TGFβ) signaling (SMAD3) and a dominant negative (DN) and two haploinsufficient variants in the ECM elastic laminae (FBN1) to those of healthy controls. The transdifferentiation efficiency, structural integrity of the cytoskeleton, TGFβ signaling profile, migration velocity and maximum contraction were measured. Transdifferentiation efficiency was strongly reduced in SMAD3 and FBN1 DN patients. ACTA2 and FBN1 DN cells showed a decrease in SMAD2 phosphorylation. Migration velocity was impaired for ACTA2 and MYH11 cells. ACTA2 cells showed reduced contractility. In conclusion, these assays for showing effects of pathogenic variants may be promising tools to help reclassification of variants of unknown clinical significance in AA-related genes. Oxford University Press 2021-07-08 /pmc/articles/PMC8600030/ /pubmed/34244757 http://dx.doi.org/10.1093/hmg/ddab190 Text en © The Author(s) 2021. Published by Oxford University Press. All rights reserved. For Permissions, please email: journals.permissions@oup.com https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle General Article
Burger, Joyce
Bogunovic, Natalija
de Wagenaar, Nathalie P
Liu, Hui
van Vliet, Nicole
IJpma, Arne
Maugeri, Alessandra
Micha, Dimitra
Verhagen, Hence J M
ten Hagen, Timo L M
Majoor-Krakauer, Danielle
van der Pluijm, Ingrid
Essers, Jeroen
Yeung, Kak K
Molecular phenotyping and functional assessment of smooth muscle-like cells with pathogenic variants in aneurysm genes ACTA2, MYH11, SMAD3 and FBN1
title Molecular phenotyping and functional assessment of smooth muscle-like cells with pathogenic variants in aneurysm genes ACTA2, MYH11, SMAD3 and FBN1
title_full Molecular phenotyping and functional assessment of smooth muscle-like cells with pathogenic variants in aneurysm genes ACTA2, MYH11, SMAD3 and FBN1
title_fullStr Molecular phenotyping and functional assessment of smooth muscle-like cells with pathogenic variants in aneurysm genes ACTA2, MYH11, SMAD3 and FBN1
title_full_unstemmed Molecular phenotyping and functional assessment of smooth muscle-like cells with pathogenic variants in aneurysm genes ACTA2, MYH11, SMAD3 and FBN1
title_short Molecular phenotyping and functional assessment of smooth muscle-like cells with pathogenic variants in aneurysm genes ACTA2, MYH11, SMAD3 and FBN1
title_sort molecular phenotyping and functional assessment of smooth muscle-like cells with pathogenic variants in aneurysm genes acta2, myh11, smad3 and fbn1
topic General Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8600030/
https://www.ncbi.nlm.nih.gov/pubmed/34244757
http://dx.doi.org/10.1093/hmg/ddab190
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