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Inhibiting MARSs reduces hyperhomocysteinemia‐associated neural tube and congenital heart defects

Hyperhomocysteinemia is a common metabolic disorder that imposes major adverse health consequences. Reducing homocysteine levels, however, is not always effective against hyperhomocysteinemia‐associated pathologies. Herein, we report the potential roles of methionyl‐tRNA synthetase (MARS)‐generated...

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Autores principales: Mei, Xinyu, Qi, Dashi, Zhang, Ting, Zhao, Ying, Jin, Li, Hou, Junli, Wang, Jianhua, Lin, Yan, Xue, Yu, Zhu, Pingping, Liu, Zexian, Huang, Lei, Nie, Ji, Si, Wen, Ma, Jingyi, Ye, Jianhong, Finnell, Richard H, Saiyin, Hexige, Wang, Hongyan, Zhao, Jianyuan, Zhao, Shimin, Xu, Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7059139/
https://www.ncbi.nlm.nih.gov/pubmed/32003121
http://dx.doi.org/10.15252/emmm.201809469
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author Mei, Xinyu
Qi, Dashi
Zhang, Ting
Zhao, Ying
Jin, Li
Hou, Junli
Wang, Jianhua
Lin, Yan
Xue, Yu
Zhu, Pingping
Liu, Zexian
Huang, Lei
Nie, Ji
Si, Wen
Ma, Jingyi
Ye, Jianhong
Finnell, Richard H
Saiyin, Hexige
Wang, Hongyan
Zhao, Jianyuan
Zhao, Shimin
Xu, Wei
author_facet Mei, Xinyu
Qi, Dashi
Zhang, Ting
Zhao, Ying
Jin, Li
Hou, Junli
Wang, Jianhua
Lin, Yan
Xue, Yu
Zhu, Pingping
Liu, Zexian
Huang, Lei
Nie, Ji
Si, Wen
Ma, Jingyi
Ye, Jianhong
Finnell, Richard H
Saiyin, Hexige
Wang, Hongyan
Zhao, Jianyuan
Zhao, Shimin
Xu, Wei
author_sort Mei, Xinyu
collection PubMed
description Hyperhomocysteinemia is a common metabolic disorder that imposes major adverse health consequences. Reducing homocysteine levels, however, is not always effective against hyperhomocysteinemia‐associated pathologies. Herein, we report the potential roles of methionyl‐tRNA synthetase (MARS)‐generated homocysteine signals in neural tube defects (NTDs) and congenital heart defects (CHDs). Increased copy numbers of MARS and/or MARS2 were detected in NTD and CHD patients. MARSs sense homocysteine and transmit its signal by inducing protein lysine (N)‐homocysteinylation. Here, we identified hundreds of novel N‐homocysteinylated proteins. N‐homocysteinylation of superoxide dismutases (SOD1/2) provided new mechanistic insights for homocysteine‐induced oxidative stress, apoptosis and Wnt signalling deregulation. Elevated MARS expression in developing and proliferating cells sensitizes them to the effects of homocysteine. Targeting MARSs using the homocysteine analogue acetyl homocysteine thioether (AHT) reversed MARS efficacy. AHT lowered NTD and CHD onsets in retinoic acid‐induced and hyperhomocysteinemia‐induced animal models without affecting homocysteine levels. We provide genetic and biochemical evidence to show that MARSs are previously overlooked genetic determinants and key pathological factors of hyperhomocysteinemia, and suggest that MARS inhibition represents an important medicinal approach for controlling hyperhomocysteinemia‐associated diseases.
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spelling pubmed-70591392020-03-11 Inhibiting MARSs reduces hyperhomocysteinemia‐associated neural tube and congenital heart defects Mei, Xinyu Qi, Dashi Zhang, Ting Zhao, Ying Jin, Li Hou, Junli Wang, Jianhua Lin, Yan Xue, Yu Zhu, Pingping Liu, Zexian Huang, Lei Nie, Ji Si, Wen Ma, Jingyi Ye, Jianhong Finnell, Richard H Saiyin, Hexige Wang, Hongyan Zhao, Jianyuan Zhao, Shimin Xu, Wei EMBO Mol Med Articles Hyperhomocysteinemia is a common metabolic disorder that imposes major adverse health consequences. Reducing homocysteine levels, however, is not always effective against hyperhomocysteinemia‐associated pathologies. Herein, we report the potential roles of methionyl‐tRNA synthetase (MARS)‐generated homocysteine signals in neural tube defects (NTDs) and congenital heart defects (CHDs). Increased copy numbers of MARS and/or MARS2 were detected in NTD and CHD patients. MARSs sense homocysteine and transmit its signal by inducing protein lysine (N)‐homocysteinylation. Here, we identified hundreds of novel N‐homocysteinylated proteins. N‐homocysteinylation of superoxide dismutases (SOD1/2) provided new mechanistic insights for homocysteine‐induced oxidative stress, apoptosis and Wnt signalling deregulation. Elevated MARS expression in developing and proliferating cells sensitizes them to the effects of homocysteine. Targeting MARSs using the homocysteine analogue acetyl homocysteine thioether (AHT) reversed MARS efficacy. AHT lowered NTD and CHD onsets in retinoic acid‐induced and hyperhomocysteinemia‐induced animal models without affecting homocysteine levels. We provide genetic and biochemical evidence to show that MARSs are previously overlooked genetic determinants and key pathological factors of hyperhomocysteinemia, and suggest that MARS inhibition represents an important medicinal approach for controlling hyperhomocysteinemia‐associated diseases. John Wiley and Sons Inc. 2020-01-31 2020-03-06 /pmc/articles/PMC7059139/ /pubmed/32003121 http://dx.doi.org/10.15252/emmm.201809469 Text en © 2020 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
Mei, Xinyu
Qi, Dashi
Zhang, Ting
Zhao, Ying
Jin, Li
Hou, Junli
Wang, Jianhua
Lin, Yan
Xue, Yu
Zhu, Pingping
Liu, Zexian
Huang, Lei
Nie, Ji
Si, Wen
Ma, Jingyi
Ye, Jianhong
Finnell, Richard H
Saiyin, Hexige
Wang, Hongyan
Zhao, Jianyuan
Zhao, Shimin
Xu, Wei
Inhibiting MARSs reduces hyperhomocysteinemia‐associated neural tube and congenital heart defects
title Inhibiting MARSs reduces hyperhomocysteinemia‐associated neural tube and congenital heart defects
title_full Inhibiting MARSs reduces hyperhomocysteinemia‐associated neural tube and congenital heart defects
title_fullStr Inhibiting MARSs reduces hyperhomocysteinemia‐associated neural tube and congenital heart defects
title_full_unstemmed Inhibiting MARSs reduces hyperhomocysteinemia‐associated neural tube and congenital heart defects
title_short Inhibiting MARSs reduces hyperhomocysteinemia‐associated neural tube and congenital heart defects
title_sort inhibiting marss reduces hyperhomocysteinemia‐associated neural tube and congenital heart defects
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7059139/
https://www.ncbi.nlm.nih.gov/pubmed/32003121
http://dx.doi.org/10.15252/emmm.201809469
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