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ERK1/2 inhibition reduces vascular calcification by activating miR-126-3p-DKK1/LRP6 pathway

Rationale: Vascular microcalcification increases the risk of rupture of vulnerable atherosclerotic lesions. Inhibition of ERK1/2 reduces atherosclerosis in animal models while its role in vascular calcification and the underlying mechanisms remains incompletely understood. Methods: Levels of activat...

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Autores principales: Zeng, Peng, Yang, Jie, Liu, Lipei, Yang, Xiaoxiao, Yao, Zhi, Ma, Chuanrui, Zhu, Haibo, Su, Jiamin, Zhao, Qian, Feng, Ke, Yang, Shu, Zhu, Yan, Li, Xiaoju, Wang, Wenguang, Duan, Yajun, Han, Jihong, Chen, Yuanli
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7738895/
https://www.ncbi.nlm.nih.gov/pubmed/33391525
http://dx.doi.org/10.7150/thno.49771
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author Zeng, Peng
Yang, Jie
Liu, Lipei
Yang, Xiaoxiao
Yao, Zhi
Ma, Chuanrui
Zhu, Haibo
Su, Jiamin
Zhao, Qian
Feng, Ke
Yang, Shu
Zhu, Yan
Li, Xiaoju
Wang, Wenguang
Duan, Yajun
Han, Jihong
Chen, Yuanli
author_facet Zeng, Peng
Yang, Jie
Liu, Lipei
Yang, Xiaoxiao
Yao, Zhi
Ma, Chuanrui
Zhu, Haibo
Su, Jiamin
Zhao, Qian
Feng, Ke
Yang, Shu
Zhu, Yan
Li, Xiaoju
Wang, Wenguang
Duan, Yajun
Han, Jihong
Chen, Yuanli
author_sort Zeng, Peng
collection PubMed
description Rationale: Vascular microcalcification increases the risk of rupture of vulnerable atherosclerotic lesions. Inhibition of ERK1/2 reduces atherosclerosis in animal models while its role in vascular calcification and the underlying mechanisms remains incompletely understood. Methods: Levels of activated ERK1/2, DKK1, LRP6 and BMP2 in human calcific aortic valves were determined. ApoE deficient mice received ERK1/2 inhibitor (U0126) treatment, followed by determination of atherosclerosis, calcification and miR-126-3p production. C57BL/6J mice were used to determine the effect of U0126 on Vitamin D(3) (VD(3))-induced medial arterial calcification. HUVECs, HAECs and HASMCs were used to determine the effects of ERK1/2 inhibitor or siRNA on SMC calcification and the involved mechanisms. Results: We observed the calcification in human aortic valves was positively correlated to ERK1/2 activity. At cellular and animal levels, U0126 reduced intimal calcification in atherosclerotic lesions of high-fat diet-fed apoE deficient mice, medial arterial calcification in VD(3)-treated C57BL/6J mice, and calcification in cultured SMCs and arterial rings. The reduction of calcification was attributed to ERK1/2 inhibition-reduced expression of ALP, BMP2 and RUNX2 by activating DKK1 and LRP6 expression, and consequently inactivating both canonical and non-canonical Wnt signaling pathways in SMCs. Furthermore, we determined ERK1/2 inhibition activated miR-126-3p production by facilitating its maturation through activation of AMPKα-mediated p53 phosphorylation, and the activated miR-126-3p from ECs and SMCs played a key role in anti-vascular calcification actions of ERK1/2 inhibition. Conclusions: Our study demonstrates that activation of miR-126-3p production in ECs/SMCs and interactions between ECs and SMCs play an important role in reduction of vascular calcification by ERK1/2 inhibition.
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spelling pubmed-77388952021-01-01 ERK1/2 inhibition reduces vascular calcification by activating miR-126-3p-DKK1/LRP6 pathway Zeng, Peng Yang, Jie Liu, Lipei Yang, Xiaoxiao Yao, Zhi Ma, Chuanrui Zhu, Haibo Su, Jiamin Zhao, Qian Feng, Ke Yang, Shu Zhu, Yan Li, Xiaoju Wang, Wenguang Duan, Yajun Han, Jihong Chen, Yuanli Theranostics Research Paper Rationale: Vascular microcalcification increases the risk of rupture of vulnerable atherosclerotic lesions. Inhibition of ERK1/2 reduces atherosclerosis in animal models while its role in vascular calcification and the underlying mechanisms remains incompletely understood. Methods: Levels of activated ERK1/2, DKK1, LRP6 and BMP2 in human calcific aortic valves were determined. ApoE deficient mice received ERK1/2 inhibitor (U0126) treatment, followed by determination of atherosclerosis, calcification and miR-126-3p production. C57BL/6J mice were used to determine the effect of U0126 on Vitamin D(3) (VD(3))-induced medial arterial calcification. HUVECs, HAECs and HASMCs were used to determine the effects of ERK1/2 inhibitor or siRNA on SMC calcification and the involved mechanisms. Results: We observed the calcification in human aortic valves was positively correlated to ERK1/2 activity. At cellular and animal levels, U0126 reduced intimal calcification in atherosclerotic lesions of high-fat diet-fed apoE deficient mice, medial arterial calcification in VD(3)-treated C57BL/6J mice, and calcification in cultured SMCs and arterial rings. The reduction of calcification was attributed to ERK1/2 inhibition-reduced expression of ALP, BMP2 and RUNX2 by activating DKK1 and LRP6 expression, and consequently inactivating both canonical and non-canonical Wnt signaling pathways in SMCs. Furthermore, we determined ERK1/2 inhibition activated miR-126-3p production by facilitating its maturation through activation of AMPKα-mediated p53 phosphorylation, and the activated miR-126-3p from ECs and SMCs played a key role in anti-vascular calcification actions of ERK1/2 inhibition. Conclusions: Our study demonstrates that activation of miR-126-3p production in ECs/SMCs and interactions between ECs and SMCs play an important role in reduction of vascular calcification by ERK1/2 inhibition. Ivyspring International Publisher 2021-01-01 /pmc/articles/PMC7738895/ /pubmed/33391525 http://dx.doi.org/10.7150/thno.49771 Text en © The author(s) This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Zeng, Peng
Yang, Jie
Liu, Lipei
Yang, Xiaoxiao
Yao, Zhi
Ma, Chuanrui
Zhu, Haibo
Su, Jiamin
Zhao, Qian
Feng, Ke
Yang, Shu
Zhu, Yan
Li, Xiaoju
Wang, Wenguang
Duan, Yajun
Han, Jihong
Chen, Yuanli
ERK1/2 inhibition reduces vascular calcification by activating miR-126-3p-DKK1/LRP6 pathway
title ERK1/2 inhibition reduces vascular calcification by activating miR-126-3p-DKK1/LRP6 pathway
title_full ERK1/2 inhibition reduces vascular calcification by activating miR-126-3p-DKK1/LRP6 pathway
title_fullStr ERK1/2 inhibition reduces vascular calcification by activating miR-126-3p-DKK1/LRP6 pathway
title_full_unstemmed ERK1/2 inhibition reduces vascular calcification by activating miR-126-3p-DKK1/LRP6 pathway
title_short ERK1/2 inhibition reduces vascular calcification by activating miR-126-3p-DKK1/LRP6 pathway
title_sort erk1/2 inhibition reduces vascular calcification by activating mir-126-3p-dkk1/lrp6 pathway
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7738895/
https://www.ncbi.nlm.nih.gov/pubmed/33391525
http://dx.doi.org/10.7150/thno.49771
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