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LSD1 contributes to programmed oocyte death by regulating the transcription of autophagy adaptor SQSTM1/p62

In female mammals, the size of the initially established primordial follicle (PF) pool within the ovaries determines the reproductive lifespan of females. Interestingly, the establishment of the PF pool is accompanied by a remarkable programmed oocyte loss for unclear reasons. Although apoptosis and...

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Autores principales: He, Meina, Zhang, Tuo, Zhu, Zijian, Qin, Shaogang, Wang, Huarong, Zhao, Lihua, Zhang, Xinran, Hu, Jiayi, Wen, Jia, Cai, Han, Xin, Qiliang, Guo, Qirui, Lin, Lin, Zhou, Bo, Zhang, Hua, Xia, Guoliang, Wang, Chao
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/PMC7059144/
https://www.ncbi.nlm.nih.gov/pubmed/32074399
http://dx.doi.org/10.1111/acel.13102
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author He, Meina
Zhang, Tuo
Zhu, Zijian
Qin, Shaogang
Wang, Huarong
Zhao, Lihua
Zhang, Xinran
Hu, Jiayi
Wen, Jia
Cai, Han
Xin, Qiliang
Guo, Qirui
Lin, Lin
Zhou, Bo
Zhang, Hua
Xia, Guoliang
Wang, Chao
author_facet He, Meina
Zhang, Tuo
Zhu, Zijian
Qin, Shaogang
Wang, Huarong
Zhao, Lihua
Zhang, Xinran
Hu, Jiayi
Wen, Jia
Cai, Han
Xin, Qiliang
Guo, Qirui
Lin, Lin
Zhou, Bo
Zhang, Hua
Xia, Guoliang
Wang, Chao
author_sort He, Meina
collection PubMed
description In female mammals, the size of the initially established primordial follicle (PF) pool within the ovaries determines the reproductive lifespan of females. Interestingly, the establishment of the PF pool is accompanied by a remarkable programmed oocyte loss for unclear reasons. Although apoptosis and autophagy are involved in the process of oocyte loss, the underlying mechanisms require substantial study. Here, we identify a new role of lysine‐specific demethylase 1 (LSD1) in controlling the fate of oocytes in perinatal mice through regulating the level of autophagy. Our results show that the relatively higher level of LSD1 in fetal ovaries sharply reduces from 18.5 postcoitus (dpc). Meanwhile, the level of autophagy increases while oocytes are initiating programmed death. Specific disruption of LSD1 resulted in significantly increased autophagy and obviously decreased oocyte number compared with the control. Conversely, the oocyte number is remarkably increased by the overexpression of Lsd1 in ovaries. We further demonstrated that LSD1 exerts its role by regulating the transcription of p62 and affecting autophagy level through its H3K4me2 demethylase activity. Finally, in physiological conditions, a decrease in LSD1 level leads to an increased level of autophagy in the oocyte when a large number of oocytes are being lost. Collectively, LSD1 may be one of indispensible epigenetic molecules who protects oocytes against preterm death through repressing the autophagy level in a time‐specific manner. And epigenetic modulation contributes to programmed oocyte death by regulating autophagy in mice.
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spelling pubmed-70591442020-03-11 LSD1 contributes to programmed oocyte death by regulating the transcription of autophagy adaptor SQSTM1/p62 He, Meina Zhang, Tuo Zhu, Zijian Qin, Shaogang Wang, Huarong Zhao, Lihua Zhang, Xinran Hu, Jiayi Wen, Jia Cai, Han Xin, Qiliang Guo, Qirui Lin, Lin Zhou, Bo Zhang, Hua Xia, Guoliang Wang, Chao Aging Cell Original Articles In female mammals, the size of the initially established primordial follicle (PF) pool within the ovaries determines the reproductive lifespan of females. Interestingly, the establishment of the PF pool is accompanied by a remarkable programmed oocyte loss for unclear reasons. Although apoptosis and autophagy are involved in the process of oocyte loss, the underlying mechanisms require substantial study. Here, we identify a new role of lysine‐specific demethylase 1 (LSD1) in controlling the fate of oocytes in perinatal mice through regulating the level of autophagy. Our results show that the relatively higher level of LSD1 in fetal ovaries sharply reduces from 18.5 postcoitus (dpc). Meanwhile, the level of autophagy increases while oocytes are initiating programmed death. Specific disruption of LSD1 resulted in significantly increased autophagy and obviously decreased oocyte number compared with the control. Conversely, the oocyte number is remarkably increased by the overexpression of Lsd1 in ovaries. We further demonstrated that LSD1 exerts its role by regulating the transcription of p62 and affecting autophagy level through its H3K4me2 demethylase activity. Finally, in physiological conditions, a decrease in LSD1 level leads to an increased level of autophagy in the oocyte when a large number of oocytes are being lost. Collectively, LSD1 may be one of indispensible epigenetic molecules who protects oocytes against preterm death through repressing the autophagy level in a time‐specific manner. And epigenetic modulation contributes to programmed oocyte death by regulating autophagy in mice. John Wiley and Sons Inc. 2020-02-19 2020-03 /pmc/articles/PMC7059144/ /pubmed/32074399 http://dx.doi.org/10.1111/acel.13102 Text en © 2020 The Authors. Aging Cell published by the Anatomical Society and John Wiley & Sons Ltd. 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 Original Articles
He, Meina
Zhang, Tuo
Zhu, Zijian
Qin, Shaogang
Wang, Huarong
Zhao, Lihua
Zhang, Xinran
Hu, Jiayi
Wen, Jia
Cai, Han
Xin, Qiliang
Guo, Qirui
Lin, Lin
Zhou, Bo
Zhang, Hua
Xia, Guoliang
Wang, Chao
LSD1 contributes to programmed oocyte death by regulating the transcription of autophagy adaptor SQSTM1/p62
title LSD1 contributes to programmed oocyte death by regulating the transcription of autophagy adaptor SQSTM1/p62
title_full LSD1 contributes to programmed oocyte death by regulating the transcription of autophagy adaptor SQSTM1/p62
title_fullStr LSD1 contributes to programmed oocyte death by regulating the transcription of autophagy adaptor SQSTM1/p62
title_full_unstemmed LSD1 contributes to programmed oocyte death by regulating the transcription of autophagy adaptor SQSTM1/p62
title_short LSD1 contributes to programmed oocyte death by regulating the transcription of autophagy adaptor SQSTM1/p62
title_sort lsd1 contributes to programmed oocyte death by regulating the transcription of autophagy adaptor sqstm1/p62
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7059144/
https://www.ncbi.nlm.nih.gov/pubmed/32074399
http://dx.doi.org/10.1111/acel.13102
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