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Mitochondrial Calcium Disorder Affects Early Embryonic Development in Mice through Regulating the ERK/MAPK Pathway

The homeostasis of mitochondrial calcium ([Ca(2+)](mt)) in oocytes plays a critical role in maintaining normal reproductive cellular progress such as meiosis. However, little is known about the association between [Ca(2+)](mt) homeostasis and early embryonic development. Two in vitro mouse MII oocyt...

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Autores principales: Zhang, Luyao, Liu, Kexiong, Zhuan, Qingrui, Liu, Zhiqiang, Meng, Lin, Fu, Xiangwei, Jia, Gongxue, Hou, Yunpeng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9142297/
https://www.ncbi.nlm.nih.gov/pubmed/35633884
http://dx.doi.org/10.1155/2022/8221361
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author Zhang, Luyao
Liu, Kexiong
Zhuan, Qingrui
Liu, Zhiqiang
Meng, Lin
Fu, Xiangwei
Jia, Gongxue
Hou, Yunpeng
author_facet Zhang, Luyao
Liu, Kexiong
Zhuan, Qingrui
Liu, Zhiqiang
Meng, Lin
Fu, Xiangwei
Jia, Gongxue
Hou, Yunpeng
author_sort Zhang, Luyao
collection PubMed
description The homeostasis of mitochondrial calcium ([Ca(2+)](mt)) in oocytes plays a critical role in maintaining normal reproductive cellular progress such as meiosis. However, little is known about the association between [Ca(2+)](mt) homeostasis and early embryonic development. Two in vitro mouse MII oocyte models were established by using a specific agonist or inhibitor targeting mitochondrial calcium uniporters (MCU) to upregulate or downregulate [Ca(2+)](mt) concentrations. The imbalance of [Ca(2+)](mt) in MII oocytes causes mitochondrial dysfunction and morphological abnormity, leading to an abnormal spindle/chromosome structure. Oocytes in drug-treated groups are less likely to develop into blastocyst during in vitro culture. Abnormal [Ca(2+)](mt) concentrations in oocytes hindered epigenetic modification and regulated mitogen-activated protein kinase (MAPK) signaling that is associated with gene expression. We also found that MAPK/ERK signaling is regulating DNA methylation in MII oocytes to modulate epigenetic modification. These data provide a new insight into the protective role of [Ca(2+)](mt) homeostasis in early embryonic development and also demonstrate a new mechanism of MAPK signaling regulated by [Ca(2+)](mt) that influences epigenetic modification.
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spelling pubmed-91422972022-05-28 Mitochondrial Calcium Disorder Affects Early Embryonic Development in Mice through Regulating the ERK/MAPK Pathway Zhang, Luyao Liu, Kexiong Zhuan, Qingrui Liu, Zhiqiang Meng, Lin Fu, Xiangwei Jia, Gongxue Hou, Yunpeng Oxid Med Cell Longev Research Article The homeostasis of mitochondrial calcium ([Ca(2+)](mt)) in oocytes plays a critical role in maintaining normal reproductive cellular progress such as meiosis. However, little is known about the association between [Ca(2+)](mt) homeostasis and early embryonic development. Two in vitro mouse MII oocyte models were established by using a specific agonist or inhibitor targeting mitochondrial calcium uniporters (MCU) to upregulate or downregulate [Ca(2+)](mt) concentrations. The imbalance of [Ca(2+)](mt) in MII oocytes causes mitochondrial dysfunction and morphological abnormity, leading to an abnormal spindle/chromosome structure. Oocytes in drug-treated groups are less likely to develop into blastocyst during in vitro culture. Abnormal [Ca(2+)](mt) concentrations in oocytes hindered epigenetic modification and regulated mitogen-activated protein kinase (MAPK) signaling that is associated with gene expression. We also found that MAPK/ERK signaling is regulating DNA methylation in MII oocytes to modulate epigenetic modification. These data provide a new insight into the protective role of [Ca(2+)](mt) homeostasis in early embryonic development and also demonstrate a new mechanism of MAPK signaling regulated by [Ca(2+)](mt) that influences epigenetic modification. Hindawi 2022-05-20 /pmc/articles/PMC9142297/ /pubmed/35633884 http://dx.doi.org/10.1155/2022/8221361 Text en Copyright © 2022 Luyao Zhang et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Zhang, Luyao
Liu, Kexiong
Zhuan, Qingrui
Liu, Zhiqiang
Meng, Lin
Fu, Xiangwei
Jia, Gongxue
Hou, Yunpeng
Mitochondrial Calcium Disorder Affects Early Embryonic Development in Mice through Regulating the ERK/MAPK Pathway
title Mitochondrial Calcium Disorder Affects Early Embryonic Development in Mice through Regulating the ERK/MAPK Pathway
title_full Mitochondrial Calcium Disorder Affects Early Embryonic Development in Mice through Regulating the ERK/MAPK Pathway
title_fullStr Mitochondrial Calcium Disorder Affects Early Embryonic Development in Mice through Regulating the ERK/MAPK Pathway
title_full_unstemmed Mitochondrial Calcium Disorder Affects Early Embryonic Development in Mice through Regulating the ERK/MAPK Pathway
title_short Mitochondrial Calcium Disorder Affects Early Embryonic Development in Mice through Regulating the ERK/MAPK Pathway
title_sort mitochondrial calcium disorder affects early embryonic development in mice through regulating the erk/mapk pathway
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9142297/
https://www.ncbi.nlm.nih.gov/pubmed/35633884
http://dx.doi.org/10.1155/2022/8221361
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