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CDT1 is the major functional regulatory subunit of the pre‐replication complex in zygotes

Pre‐replication complex (pre‐RC) is critical for DNA replication initiation. CDT1 and MCM2 are the subunits of pre‐RC, and proper regulation of CDT1 and MCM2 are necessary for DNA replication and cell proliferation. The present study aimed to explore the role of CDT1 and MCM2 in oocyte meiotic matur...

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Autores principales: Li, Chao, Tan, Yong‐Peng, Ma, Xue‐Shan, Wang, Zhen‐Bo, Meng, Tie‐Gang, Sun, Qing‐Yuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9977660/
https://www.ncbi.nlm.nih.gov/pubmed/36479743
http://dx.doi.org/10.1111/cpr.13377
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author Li, Chao
Tan, Yong‐Peng
Ma, Xue‐Shan
Wang, Zhen‐Bo
Meng, Tie‐Gang
Sun, Qing‐Yuan
author_facet Li, Chao
Tan, Yong‐Peng
Ma, Xue‐Shan
Wang, Zhen‐Bo
Meng, Tie‐Gang
Sun, Qing‐Yuan
author_sort Li, Chao
collection PubMed
description Pre‐replication complex (pre‐RC) is critical for DNA replication initiation. CDT1 and MCM2 are the subunits of pre‐RC, and proper regulation of CDT1 and MCM2 are necessary for DNA replication and cell proliferation. The present study aimed to explore the role of CDT1 and MCM2 in oocyte meiotic maturation and early embryonic development. The depletion and overexpression of Cdt1 and Mcm2 in oocyte and zygote were achieved by microinjecting specific siRNA and mRNA to explored their functions in oocyte meiotic maturation and embryonic development. Then, we examined the effect of CDT1 and MCM2 on other signal pathways by immunostaining the expression of related maker genes. We showed that neither depletion nor overexpression of Cdt1 affected oocyte meiotic progressions. The CDT1 was degraded in S phase and remained at a low level in G2 phase of zygote. Exogenous expression of Cdt1 in G2 phase led to embryo attest at zygote stage. Mechanistically, CDT1 overexpression induced DNA re‐replication and thus DNA damage check‐point activation. Protein abundance of MCM2 was stable throughout the cell cycle, and embryos with overexpressed MCM2 could develop to blastocysts normally. Overexpression or depletion of Mcm2 also had no effect on oocyte meiotic maturation. Our results indicate that pre‐RC subunits CDT1 and MCM2 are not involved in oocyte meiotic maturation. In zygote, CDT1 but not MCM2 is the major regulator of DNA replication in a cell cycle dependent manner. Furthermore, its' degradation is essential for zygotes to prevent from DNA re‐replication in G2 stage.
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spelling pubmed-99776602023-03-03 CDT1 is the major functional regulatory subunit of the pre‐replication complex in zygotes Li, Chao Tan, Yong‐Peng Ma, Xue‐Shan Wang, Zhen‐Bo Meng, Tie‐Gang Sun, Qing‐Yuan Cell Prolif Original Articles Pre‐replication complex (pre‐RC) is critical for DNA replication initiation. CDT1 and MCM2 are the subunits of pre‐RC, and proper regulation of CDT1 and MCM2 are necessary for DNA replication and cell proliferation. The present study aimed to explore the role of CDT1 and MCM2 in oocyte meiotic maturation and early embryonic development. The depletion and overexpression of Cdt1 and Mcm2 in oocyte and zygote were achieved by microinjecting specific siRNA and mRNA to explored their functions in oocyte meiotic maturation and embryonic development. Then, we examined the effect of CDT1 and MCM2 on other signal pathways by immunostaining the expression of related maker genes. We showed that neither depletion nor overexpression of Cdt1 affected oocyte meiotic progressions. The CDT1 was degraded in S phase and remained at a low level in G2 phase of zygote. Exogenous expression of Cdt1 in G2 phase led to embryo attest at zygote stage. Mechanistically, CDT1 overexpression induced DNA re‐replication and thus DNA damage check‐point activation. Protein abundance of MCM2 was stable throughout the cell cycle, and embryos with overexpressed MCM2 could develop to blastocysts normally. Overexpression or depletion of Mcm2 also had no effect on oocyte meiotic maturation. Our results indicate that pre‐RC subunits CDT1 and MCM2 are not involved in oocyte meiotic maturation. In zygote, CDT1 but not MCM2 is the major regulator of DNA replication in a cell cycle dependent manner. Furthermore, its' degradation is essential for zygotes to prevent from DNA re‐replication in G2 stage. John Wiley and Sons Inc. 2022-12-07 /pmc/articles/PMC9977660/ /pubmed/36479743 http://dx.doi.org/10.1111/cpr.13377 Text en © 2022 The Authors. Cell Proliferation published by Beijing Institute for Stem Cell and Regenerative Medicine and John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://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
Li, Chao
Tan, Yong‐Peng
Ma, Xue‐Shan
Wang, Zhen‐Bo
Meng, Tie‐Gang
Sun, Qing‐Yuan
CDT1 is the major functional regulatory subunit of the pre‐replication complex in zygotes
title CDT1 is the major functional regulatory subunit of the pre‐replication complex in zygotes
title_full CDT1 is the major functional regulatory subunit of the pre‐replication complex in zygotes
title_fullStr CDT1 is the major functional regulatory subunit of the pre‐replication complex in zygotes
title_full_unstemmed CDT1 is the major functional regulatory subunit of the pre‐replication complex in zygotes
title_short CDT1 is the major functional regulatory subunit of the pre‐replication complex in zygotes
title_sort cdt1 is the major functional regulatory subunit of the pre‐replication complex in zygotes
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9977660/
https://www.ncbi.nlm.nih.gov/pubmed/36479743
http://dx.doi.org/10.1111/cpr.13377
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