Cargando…

EVA1A (Eva-1 Homolog A) Promotes Endothelial Apoptosis and Inflammatory Activation Under Disturbed Flow Via Regulation of Autophagy

Hemodynamic wall shear stress (WSS) exerted on the endothelium by flowing blood determines the spatial distribution of atherosclerotic lesions. Disturbed flow (DF) with a low WSS magnitude and reversing direction promotes atherosclerosis by regulating endothelial cell (EC) viability and function, wh...

Descripción completa

Detalles Bibliográficos
Autores principales: Canham, Lindsay, Sendac, Sam, Diagbouga, Mannekomba R., Wolodimeroff, Elena, Pirri, Daniela, Tardajos Ayllon, Blanca, Feng, Shuang, Souilhol, Celine, Chico, Timothy J.A., Evans, Paul C., Serbanovic-Canic, Jovana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Lippincott Williams & Wilkins 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10026973/
https://www.ncbi.nlm.nih.gov/pubmed/36794585
http://dx.doi.org/10.1161/ATVBAHA.122.318110
_version_ 1784909628823306240
author Canham, Lindsay
Sendac, Sam
Diagbouga, Mannekomba R.
Wolodimeroff, Elena
Pirri, Daniela
Tardajos Ayllon, Blanca
Feng, Shuang
Souilhol, Celine
Chico, Timothy J.A.
Evans, Paul C.
Serbanovic-Canic, Jovana
author_facet Canham, Lindsay
Sendac, Sam
Diagbouga, Mannekomba R.
Wolodimeroff, Elena
Pirri, Daniela
Tardajos Ayllon, Blanca
Feng, Shuang
Souilhol, Celine
Chico, Timothy J.A.
Evans, Paul C.
Serbanovic-Canic, Jovana
author_sort Canham, Lindsay
collection PubMed
description Hemodynamic wall shear stress (WSS) exerted on the endothelium by flowing blood determines the spatial distribution of atherosclerotic lesions. Disturbed flow (DF) with a low WSS magnitude and reversing direction promotes atherosclerosis by regulating endothelial cell (EC) viability and function, whereas un-DF which is unidirectional and of high WSS magnitude is atheroprotective. Here, we study the role of EVA1A (eva-1 homolog A), a lysosome and endoplasmic reticulum-associated protein linked to autophagy and apoptosis, in WSS-regulated EC dysfunction. METHODS: The effect of WSS on EVA1A expression was studied using porcine and mouse aortas and cultured human ECs exposed to flow. EVA1A was silenced in vitro in human ECs and in vivo in zebrafish using siRNA (small interfering RNA) and morpholinos, respectively. RESULTS: EVA1A was induced by proatherogenic DF at both mRNA and protein levels. EVA1A silencing resulted in decreased EC apoptosis, permeability, and expression of inflammatory markers under DF. Assessment of autophagic flux using the autolysosome inhibitor, bafilomycin coupled to the autophagy markers LC3-II (microtubule-associated protein 1 light chain 3-II) and p62, revealed that EVA1A knockdown promotes autophagy when ECs are exposed to DF, but not un-DF . Blocking autophagic flux led to increased EC apoptosis in EVA1A-knockdown cells exposed to DF, suggesting that autophagy mediates the effects of DF on EC dysfunction. Mechanistically, EVA1A expression was regulated by flow direction via TWIST1 (twist basic helix-loop-helix transcription factor 1). In vivo, knockdown of EVA1A orthologue in zebrafish resulted in reduced EC apoptosis, confirming the proapoptotic role of EVA1A in the endothelium. CONCLUSIONS: We identified EVA1A as a novel flow-sensitive gene that mediates the effects of proatherogenic DF on EC dysfunction by regulating autophagy.
format Online
Article
Text
id pubmed-10026973
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Lippincott Williams & Wilkins
record_format MEDLINE/PubMed
spelling pubmed-100269732023-03-21 EVA1A (Eva-1 Homolog A) Promotes Endothelial Apoptosis and Inflammatory Activation Under Disturbed Flow Via Regulation of Autophagy Canham, Lindsay Sendac, Sam Diagbouga, Mannekomba R. Wolodimeroff, Elena Pirri, Daniela Tardajos Ayllon, Blanca Feng, Shuang Souilhol, Celine Chico, Timothy J.A. Evans, Paul C. Serbanovic-Canic, Jovana Arterioscler Thromb Vasc Biol Basic Sciences Hemodynamic wall shear stress (WSS) exerted on the endothelium by flowing blood determines the spatial distribution of atherosclerotic lesions. Disturbed flow (DF) with a low WSS magnitude and reversing direction promotes atherosclerosis by regulating endothelial cell (EC) viability and function, whereas un-DF which is unidirectional and of high WSS magnitude is atheroprotective. Here, we study the role of EVA1A (eva-1 homolog A), a lysosome and endoplasmic reticulum-associated protein linked to autophagy and apoptosis, in WSS-regulated EC dysfunction. METHODS: The effect of WSS on EVA1A expression was studied using porcine and mouse aortas and cultured human ECs exposed to flow. EVA1A was silenced in vitro in human ECs and in vivo in zebrafish using siRNA (small interfering RNA) and morpholinos, respectively. RESULTS: EVA1A was induced by proatherogenic DF at both mRNA and protein levels. EVA1A silencing resulted in decreased EC apoptosis, permeability, and expression of inflammatory markers under DF. Assessment of autophagic flux using the autolysosome inhibitor, bafilomycin coupled to the autophagy markers LC3-II (microtubule-associated protein 1 light chain 3-II) and p62, revealed that EVA1A knockdown promotes autophagy when ECs are exposed to DF, but not un-DF . Blocking autophagic flux led to increased EC apoptosis in EVA1A-knockdown cells exposed to DF, suggesting that autophagy mediates the effects of DF on EC dysfunction. Mechanistically, EVA1A expression was regulated by flow direction via TWIST1 (twist basic helix-loop-helix transcription factor 1). In vivo, knockdown of EVA1A orthologue in zebrafish resulted in reduced EC apoptosis, confirming the proapoptotic role of EVA1A in the endothelium. CONCLUSIONS: We identified EVA1A as a novel flow-sensitive gene that mediates the effects of proatherogenic DF on EC dysfunction by regulating autophagy. Lippincott Williams & Wilkins 2023-02-16 2023-04 /pmc/articles/PMC10026973/ /pubmed/36794585 http://dx.doi.org/10.1161/ATVBAHA.122.318110 Text en © 2023 The Authors. https://creativecommons.org/licenses/by/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 (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution, and reproduction in any medium, provided that the original work is properly cited.
spellingShingle Basic Sciences
Canham, Lindsay
Sendac, Sam
Diagbouga, Mannekomba R.
Wolodimeroff, Elena
Pirri, Daniela
Tardajos Ayllon, Blanca
Feng, Shuang
Souilhol, Celine
Chico, Timothy J.A.
Evans, Paul C.
Serbanovic-Canic, Jovana
EVA1A (Eva-1 Homolog A) Promotes Endothelial Apoptosis and Inflammatory Activation Under Disturbed Flow Via Regulation of Autophagy
title EVA1A (Eva-1 Homolog A) Promotes Endothelial Apoptosis and Inflammatory Activation Under Disturbed Flow Via Regulation of Autophagy
title_full EVA1A (Eva-1 Homolog A) Promotes Endothelial Apoptosis and Inflammatory Activation Under Disturbed Flow Via Regulation of Autophagy
title_fullStr EVA1A (Eva-1 Homolog A) Promotes Endothelial Apoptosis and Inflammatory Activation Under Disturbed Flow Via Regulation of Autophagy
title_full_unstemmed EVA1A (Eva-1 Homolog A) Promotes Endothelial Apoptosis and Inflammatory Activation Under Disturbed Flow Via Regulation of Autophagy
title_short EVA1A (Eva-1 Homolog A) Promotes Endothelial Apoptosis and Inflammatory Activation Under Disturbed Flow Via Regulation of Autophagy
title_sort eva1a (eva-1 homolog a) promotes endothelial apoptosis and inflammatory activation under disturbed flow via regulation of autophagy
topic Basic Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10026973/
https://www.ncbi.nlm.nih.gov/pubmed/36794585
http://dx.doi.org/10.1161/ATVBAHA.122.318110
work_keys_str_mv AT canhamlindsay eva1aeva1homologapromotesendothelialapoptosisandinflammatoryactivationunderdisturbedflowviaregulationofautophagy
AT sendacsam eva1aeva1homologapromotesendothelialapoptosisandinflammatoryactivationunderdisturbedflowviaregulationofautophagy
AT diagbougamannekombar eva1aeva1homologapromotesendothelialapoptosisandinflammatoryactivationunderdisturbedflowviaregulationofautophagy
AT wolodimeroffelena eva1aeva1homologapromotesendothelialapoptosisandinflammatoryactivationunderdisturbedflowviaregulationofautophagy
AT pirridaniela eva1aeva1homologapromotesendothelialapoptosisandinflammatoryactivationunderdisturbedflowviaregulationofautophagy
AT tardajosayllonblanca eva1aeva1homologapromotesendothelialapoptosisandinflammatoryactivationunderdisturbedflowviaregulationofautophagy
AT fengshuang eva1aeva1homologapromotesendothelialapoptosisandinflammatoryactivationunderdisturbedflowviaregulationofautophagy
AT souilholceline eva1aeva1homologapromotesendothelialapoptosisandinflammatoryactivationunderdisturbedflowviaregulationofautophagy
AT chicotimothyja eva1aeva1homologapromotesendothelialapoptosisandinflammatoryactivationunderdisturbedflowviaregulationofautophagy
AT evanspaulc eva1aeva1homologapromotesendothelialapoptosisandinflammatoryactivationunderdisturbedflowviaregulationofautophagy
AT serbanoviccanicjovana eva1aeva1homologapromotesendothelialapoptosisandinflammatoryactivationunderdisturbedflowviaregulationofautophagy