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miR-27a-3p Targets ATF3 to Reduce Calcium Deposition in Vascular Smooth Muscle Cells

Vascular calcification, the ectopic deposition of calcium in blood vessels, develops in association with various metabolic diseases and atherosclerosis and is an independent predictor of morbidity and mortality associated with these diseases. Herein, we report that reduction of microRNA-27a-3p (miR-...

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Autores principales: Choe, Nakwon, Kwon, Duk-Hwa, Ryu, Juhee, Shin, Sera, Cho, Hye Jung, Joung, Hosouk, Eom, Gwang Hyeon, Ahn, Youngkeun, Park, Woo Jin, Nam, Kwang-Il, Kim, Young-Kook, Kook, Hyun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7578555/
https://www.ncbi.nlm.nih.gov/pubmed/33230462
http://dx.doi.org/10.1016/j.omtn.2020.09.030
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author Choe, Nakwon
Kwon, Duk-Hwa
Ryu, Juhee
Shin, Sera
Cho, Hye Jung
Joung, Hosouk
Eom, Gwang Hyeon
Ahn, Youngkeun
Park, Woo Jin
Nam, Kwang-Il
Kim, Young-Kook
Kook, Hyun
author_facet Choe, Nakwon
Kwon, Duk-Hwa
Ryu, Juhee
Shin, Sera
Cho, Hye Jung
Joung, Hosouk
Eom, Gwang Hyeon
Ahn, Youngkeun
Park, Woo Jin
Nam, Kwang-Il
Kim, Young-Kook
Kook, Hyun
author_sort Choe, Nakwon
collection PubMed
description Vascular calcification, the ectopic deposition of calcium in blood vessels, develops in association with various metabolic diseases and atherosclerosis and is an independent predictor of morbidity and mortality associated with these diseases. Herein, we report that reduction of microRNA-27a-3p (miR-27a-3p) causes an increase in activating transcription factor 3 (ATF3), a novel osteogenic transcription factor, in vascular smooth muscle cells. Both microRNA (miRNA) and mRNA microarrays were performed with rat vascular smooth muscle cells, and reciprocally regulated pairs of miRNA and mRNA were selected after bioinformatics analysis. Inorganic phosphate significantly reduced the expression of miR-27a-3p in A10 cells. The transcript level was also reduced in vitamin D(3)-administered mouse aortas. miR-27a-3p mimic reduced calcium deposition, whereas miR-27a-3p inhibitor increased it. The Atf3 mRNA level was upregulated in a cellular vascular calcification model, and miR-27a-3p reduced the Atf3 mRNA and protein levels. Transfection with Atf3 could recover the miR-27a-3p-induced reduction of calcium deposition. Our results suggest that reduction of miR-27a-3p may contribute to the development of vascular calcification by de-repression of ATF3.
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spelling pubmed-75785552020-11-02 miR-27a-3p Targets ATF3 to Reduce Calcium Deposition in Vascular Smooth Muscle Cells Choe, Nakwon Kwon, Duk-Hwa Ryu, Juhee Shin, Sera Cho, Hye Jung Joung, Hosouk Eom, Gwang Hyeon Ahn, Youngkeun Park, Woo Jin Nam, Kwang-Il Kim, Young-Kook Kook, Hyun Mol Ther Nucleic Acids Original Article Vascular calcification, the ectopic deposition of calcium in blood vessels, develops in association with various metabolic diseases and atherosclerosis and is an independent predictor of morbidity and mortality associated with these diseases. Herein, we report that reduction of microRNA-27a-3p (miR-27a-3p) causes an increase in activating transcription factor 3 (ATF3), a novel osteogenic transcription factor, in vascular smooth muscle cells. Both microRNA (miRNA) and mRNA microarrays were performed with rat vascular smooth muscle cells, and reciprocally regulated pairs of miRNA and mRNA were selected after bioinformatics analysis. Inorganic phosphate significantly reduced the expression of miR-27a-3p in A10 cells. The transcript level was also reduced in vitamin D(3)-administered mouse aortas. miR-27a-3p mimic reduced calcium deposition, whereas miR-27a-3p inhibitor increased it. The Atf3 mRNA level was upregulated in a cellular vascular calcification model, and miR-27a-3p reduced the Atf3 mRNA and protein levels. Transfection with Atf3 could recover the miR-27a-3p-induced reduction of calcium deposition. Our results suggest that reduction of miR-27a-3p may contribute to the development of vascular calcification by de-repression of ATF3. American Society of Gene & Cell Therapy 2020-09-28 /pmc/articles/PMC7578555/ /pubmed/33230462 http://dx.doi.org/10.1016/j.omtn.2020.09.030 Text en © 2020 The Author(s) http://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 Original Article
Choe, Nakwon
Kwon, Duk-Hwa
Ryu, Juhee
Shin, Sera
Cho, Hye Jung
Joung, Hosouk
Eom, Gwang Hyeon
Ahn, Youngkeun
Park, Woo Jin
Nam, Kwang-Il
Kim, Young-Kook
Kook, Hyun
miR-27a-3p Targets ATF3 to Reduce Calcium Deposition in Vascular Smooth Muscle Cells
title miR-27a-3p Targets ATF3 to Reduce Calcium Deposition in Vascular Smooth Muscle Cells
title_full miR-27a-3p Targets ATF3 to Reduce Calcium Deposition in Vascular Smooth Muscle Cells
title_fullStr miR-27a-3p Targets ATF3 to Reduce Calcium Deposition in Vascular Smooth Muscle Cells
title_full_unstemmed miR-27a-3p Targets ATF3 to Reduce Calcium Deposition in Vascular Smooth Muscle Cells
title_short miR-27a-3p Targets ATF3 to Reduce Calcium Deposition in Vascular Smooth Muscle Cells
title_sort mir-27a-3p targets atf3 to reduce calcium deposition in vascular smooth muscle cells
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7578555/
https://www.ncbi.nlm.nih.gov/pubmed/33230462
http://dx.doi.org/10.1016/j.omtn.2020.09.030
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