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CEP41‐mediated ciliary tubulin glutamylation drives angiogenesis through AURKA‐dependent deciliation

The endothelial cilium is a microtubule‐based organelle responsible for blood flow‐induced mechanosensation and signal transduction during angiogenesis. The precise function and mechanisms by which ciliary mechanosensation occurs, however, are poorly understood. Although posttranslational modificati...

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Autores principales: Ki, Soo Mi, Kim, Ji Hyun, Won, So Yeon, Oh, Shin Ji, Lee, In Young, Bae, Young‐Ki, Chung, Ki Wha, Choi, Byung‐Ok, Park, Boyoun, Choi, Eui‐Ju, Lee, Ji Eun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7001496/
https://www.ncbi.nlm.nih.gov/pubmed/31885126
http://dx.doi.org/10.15252/embr.201948290
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author Ki, Soo Mi
Kim, Ji Hyun
Won, So Yeon
Oh, Shin Ji
Lee, In Young
Bae, Young‐Ki
Chung, Ki Wha
Choi, Byung‐Ok
Park, Boyoun
Choi, Eui‐Ju
Lee, Ji Eun
author_facet Ki, Soo Mi
Kim, Ji Hyun
Won, So Yeon
Oh, Shin Ji
Lee, In Young
Bae, Young‐Ki
Chung, Ki Wha
Choi, Byung‐Ok
Park, Boyoun
Choi, Eui‐Ju
Lee, Ji Eun
author_sort Ki, Soo Mi
collection PubMed
description The endothelial cilium is a microtubule‐based organelle responsible for blood flow‐induced mechanosensation and signal transduction during angiogenesis. The precise function and mechanisms by which ciliary mechanosensation occurs, however, are poorly understood. Although posttranslational modifications (PTMs) of cytoplasmic tubulin are known to be important in angiogenesis, the specific roles of ciliary tubulin PTMs play remain unclear. Here, we report that loss of centrosomal protein 41 (CEP41) results in vascular impairment in human cell lines and zebrafish, implying a previously unknown pro‐angiogenic role for CEP41. We show that proper control of tubulin glutamylation by CEP41 is necessary for cilia disassembly and that is involved in endothelial cell (EC) dynamics such as migration and tubulogenesis. We show that in ECs responding to shear stress or hypoxia, CEP41 activates Aurora kinase A (AURKA) and upregulates expression of VEGFA and VEGFR2 through ciliary tubulin glutamylation, as well as leads to the deciliation. We further show that in hypoxia‐induced angiogenesis, CEP41 is responsible for the activation of HIF1α to trigger the AURKA‐VEGF pathway. Overall, our results suggest the CEP41‐HIF1α‐AURKA‐VEGF axis as a key molecular mechanism of angiogenesis and demonstrate how important ciliary tubulin glutamylation is in mechanosense‐responded EC dynamics.
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spelling pubmed-70014962020-02-10 CEP41‐mediated ciliary tubulin glutamylation drives angiogenesis through AURKA‐dependent deciliation Ki, Soo Mi Kim, Ji Hyun Won, So Yeon Oh, Shin Ji Lee, In Young Bae, Young‐Ki Chung, Ki Wha Choi, Byung‐Ok Park, Boyoun Choi, Eui‐Ju Lee, Ji Eun EMBO Rep Articles The endothelial cilium is a microtubule‐based organelle responsible for blood flow‐induced mechanosensation and signal transduction during angiogenesis. The precise function and mechanisms by which ciliary mechanosensation occurs, however, are poorly understood. Although posttranslational modifications (PTMs) of cytoplasmic tubulin are known to be important in angiogenesis, the specific roles of ciliary tubulin PTMs play remain unclear. Here, we report that loss of centrosomal protein 41 (CEP41) results in vascular impairment in human cell lines and zebrafish, implying a previously unknown pro‐angiogenic role for CEP41. We show that proper control of tubulin glutamylation by CEP41 is necessary for cilia disassembly and that is involved in endothelial cell (EC) dynamics such as migration and tubulogenesis. We show that in ECs responding to shear stress or hypoxia, CEP41 activates Aurora kinase A (AURKA) and upregulates expression of VEGFA and VEGFR2 through ciliary tubulin glutamylation, as well as leads to the deciliation. We further show that in hypoxia‐induced angiogenesis, CEP41 is responsible for the activation of HIF1α to trigger the AURKA‐VEGF pathway. Overall, our results suggest the CEP41‐HIF1α‐AURKA‐VEGF axis as a key molecular mechanism of angiogenesis and demonstrate how important ciliary tubulin glutamylation is in mechanosense‐responded EC dynamics. John Wiley and Sons Inc. 2019-12-29 2020-02-05 /pmc/articles/PMC7001496/ /pubmed/31885126 http://dx.doi.org/10.15252/embr.201948290 Text en © 2019 The Authors. Published under the terms of the CC BY 4.0 license This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Ki, Soo Mi
Kim, Ji Hyun
Won, So Yeon
Oh, Shin Ji
Lee, In Young
Bae, Young‐Ki
Chung, Ki Wha
Choi, Byung‐Ok
Park, Boyoun
Choi, Eui‐Ju
Lee, Ji Eun
CEP41‐mediated ciliary tubulin glutamylation drives angiogenesis through AURKA‐dependent deciliation
title CEP41‐mediated ciliary tubulin glutamylation drives angiogenesis through AURKA‐dependent deciliation
title_full CEP41‐mediated ciliary tubulin glutamylation drives angiogenesis through AURKA‐dependent deciliation
title_fullStr CEP41‐mediated ciliary tubulin glutamylation drives angiogenesis through AURKA‐dependent deciliation
title_full_unstemmed CEP41‐mediated ciliary tubulin glutamylation drives angiogenesis through AURKA‐dependent deciliation
title_short CEP41‐mediated ciliary tubulin glutamylation drives angiogenesis through AURKA‐dependent deciliation
title_sort cep41‐mediated ciliary tubulin glutamylation drives angiogenesis through aurka‐dependent deciliation
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7001496/
https://www.ncbi.nlm.nih.gov/pubmed/31885126
http://dx.doi.org/10.15252/embr.201948290
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