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ApoC-III is a novel inducer of calcification in human aortic valves

Calcific aortic valve disease (CAVD) occurs when subpopulations of valve cells undergo specific differentiation pathways, promoting tissue fibrosis and calcification. Lipoprotein particles carry oxidized lipids that promote valvular disease, but low-density lipoprotein–lowering therapies have failed...

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Autores principales: Schlotter, Florian, de Freitas, Renata C.C., Rogers, Maximillian A., Blaser, Mark C., Wu, Pin-Jou, Higashi, Hideyuki, Halu, Arda, Iqbal, Farwah, Andraski, Allison B., Rodia, Cayla N., Kuraoka, Shiori, Wen, Jennifer R., Creager, Michael, Pham, Tan, Hutcheson, Joshua D., Body, Simon C., Kohan, Alison B., Sacks, Frank M., Aikawa, Masanori, Singh, Sasha A., Aikawa, Elena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7948477/
https://www.ncbi.nlm.nih.gov/pubmed/33334888
http://dx.doi.org/10.1074/jbc.RA120.015700
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author Schlotter, Florian
de Freitas, Renata C.C.
Rogers, Maximillian A.
Blaser, Mark C.
Wu, Pin-Jou
Higashi, Hideyuki
Halu, Arda
Iqbal, Farwah
Andraski, Allison B.
Rodia, Cayla N.
Kuraoka, Shiori
Wen, Jennifer R.
Creager, Michael
Pham, Tan
Hutcheson, Joshua D.
Body, Simon C.
Kohan, Alison B.
Sacks, Frank M.
Aikawa, Masanori
Singh, Sasha A.
Aikawa, Elena
author_facet Schlotter, Florian
de Freitas, Renata C.C.
Rogers, Maximillian A.
Blaser, Mark C.
Wu, Pin-Jou
Higashi, Hideyuki
Halu, Arda
Iqbal, Farwah
Andraski, Allison B.
Rodia, Cayla N.
Kuraoka, Shiori
Wen, Jennifer R.
Creager, Michael
Pham, Tan
Hutcheson, Joshua D.
Body, Simon C.
Kohan, Alison B.
Sacks, Frank M.
Aikawa, Masanori
Singh, Sasha A.
Aikawa, Elena
author_sort Schlotter, Florian
collection PubMed
description Calcific aortic valve disease (CAVD) occurs when subpopulations of valve cells undergo specific differentiation pathways, promoting tissue fibrosis and calcification. Lipoprotein particles carry oxidized lipids that promote valvular disease, but low-density lipoprotein–lowering therapies have failed in clinical trials, and there are currently no pharmacological interventions available for this disease. Apolipoproteins are known promoters of atherosclerosis, but whether they possess pathogenic properties in CAVD is less clear. To search for a possible link, we assessed 12 apolipoproteins in nonfibrotic/noncalcific and fibrotic/calcific aortic valve tissues by proteomics and immunohistochemistry to understand if they were enriched in calcified areas. Eight apolipoproteins (apoA-I, apoA-II, apoA-IV, apoB, apoC-III, apoD, apoL-I, and apoM) were enriched in the calcific versus nonfibrotic/noncalcific tissues. Apo(a), apoB, apoC-III, apoE, and apoJ localized within the disease-prone fibrosa and colocalized with calcific regions as detected by immunohistochemistry. Circulating apoC-III on lipoprotein(a) is a potential biomarker of aortic stenosis incidence and progression, but whether apoC-III also induces aortic valve calcification is unknown. We found that apoC-III was increased in fibrotic and calcific tissues and observed within the calcification-prone fibrosa layer as well as around calcification. In addition, we showed that apoC-III induced calcification in primary human valvular cell cultures via a mitochondrial dysfunction/inflammation-mediated pathway. This study provides a first assessment of a broad array of apolipoproteins in CAVD tissues, demonstrates that specific apolipoproteins associate with valvular calcification, and implicates apoC-III as an active and modifiable driver of CAVD beyond its potential role as a biomarker.
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spelling pubmed-79484772021-03-19 ApoC-III is a novel inducer of calcification in human aortic valves Schlotter, Florian de Freitas, Renata C.C. Rogers, Maximillian A. Blaser, Mark C. Wu, Pin-Jou Higashi, Hideyuki Halu, Arda Iqbal, Farwah Andraski, Allison B. Rodia, Cayla N. Kuraoka, Shiori Wen, Jennifer R. Creager, Michael Pham, Tan Hutcheson, Joshua D. Body, Simon C. Kohan, Alison B. Sacks, Frank M. Aikawa, Masanori Singh, Sasha A. Aikawa, Elena J Biol Chem Research Article Calcific aortic valve disease (CAVD) occurs when subpopulations of valve cells undergo specific differentiation pathways, promoting tissue fibrosis and calcification. Lipoprotein particles carry oxidized lipids that promote valvular disease, but low-density lipoprotein–lowering therapies have failed in clinical trials, and there are currently no pharmacological interventions available for this disease. Apolipoproteins are known promoters of atherosclerosis, but whether they possess pathogenic properties in CAVD is less clear. To search for a possible link, we assessed 12 apolipoproteins in nonfibrotic/noncalcific and fibrotic/calcific aortic valve tissues by proteomics and immunohistochemistry to understand if they were enriched in calcified areas. Eight apolipoproteins (apoA-I, apoA-II, apoA-IV, apoB, apoC-III, apoD, apoL-I, and apoM) were enriched in the calcific versus nonfibrotic/noncalcific tissues. Apo(a), apoB, apoC-III, apoE, and apoJ localized within the disease-prone fibrosa and colocalized with calcific regions as detected by immunohistochemistry. Circulating apoC-III on lipoprotein(a) is a potential biomarker of aortic stenosis incidence and progression, but whether apoC-III also induces aortic valve calcification is unknown. We found that apoC-III was increased in fibrotic and calcific tissues and observed within the calcification-prone fibrosa layer as well as around calcification. In addition, we showed that apoC-III induced calcification in primary human valvular cell cultures via a mitochondrial dysfunction/inflammation-mediated pathway. This study provides a first assessment of a broad array of apolipoproteins in CAVD tissues, demonstrates that specific apolipoproteins associate with valvular calcification, and implicates apoC-III as an active and modifiable driver of CAVD beyond its potential role as a biomarker. American Society for Biochemistry and Molecular Biology 2021-01-06 /pmc/articles/PMC7948477/ /pubmed/33334888 http://dx.doi.org/10.1074/jbc.RA120.015700 Text en © 2020 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Schlotter, Florian
de Freitas, Renata C.C.
Rogers, Maximillian A.
Blaser, Mark C.
Wu, Pin-Jou
Higashi, Hideyuki
Halu, Arda
Iqbal, Farwah
Andraski, Allison B.
Rodia, Cayla N.
Kuraoka, Shiori
Wen, Jennifer R.
Creager, Michael
Pham, Tan
Hutcheson, Joshua D.
Body, Simon C.
Kohan, Alison B.
Sacks, Frank M.
Aikawa, Masanori
Singh, Sasha A.
Aikawa, Elena
ApoC-III is a novel inducer of calcification in human aortic valves
title ApoC-III is a novel inducer of calcification in human aortic valves
title_full ApoC-III is a novel inducer of calcification in human aortic valves
title_fullStr ApoC-III is a novel inducer of calcification in human aortic valves
title_full_unstemmed ApoC-III is a novel inducer of calcification in human aortic valves
title_short ApoC-III is a novel inducer of calcification in human aortic valves
title_sort apoc-iii is a novel inducer of calcification in human aortic valves
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7948477/
https://www.ncbi.nlm.nih.gov/pubmed/33334888
http://dx.doi.org/10.1074/jbc.RA120.015700
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