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Maternal SENP7 programs meiosis architecture and embryo survival in mouse.
Huang, Chun-Jie; Wu, Di; Jiao, Xiao-Fei; Khan, Faheem Ahmed; Xiong, Cheng-Liang; Liu, Xiao-Ming; Yang, Jing; Yin, Tai-Lang; Huo, Li-Jun.
Afiliação
  • Huang CJ; Key Laboratory of Agricultural Animal Genetics, Breeding and Reproduction of Ministry Education, College of Animal Science and Technology, Huazhong Agricultural University, Wuhan 430070, PR China.
  • Wu D; Key Laboratory of Agricultural Animal Genetics, Breeding and Reproduction of Ministry Education, College of Animal Science and Technology, Huazhong Agricultural University, Wuhan 430070, PR China.
  • Jiao XF; Key Laboratory of Agricultural Animal Genetics, Breeding and Reproduction of Ministry Education, College of Animal Science and Technology, Huazhong Agricultural University, Wuhan 430070, PR China.
  • Khan FA; Key Laboratory of Agricultural Animal Genetics, Breeding and Reproduction of Ministry Education, College of Animal Science and Technology, Huazhong Agricultural University, Wuhan 430070, PR China.
  • Xiong CL; Reproductive Medicine Center of Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430000, PR China.
  • Liu XM; Second Affiliated Hospital and Center of Reproductive Medicine, Wenzhou Medical University, Wenzhou 330302, PR China.
  • Yang J; Reproductive Medicine Center, Wuhan University Renmin Hospital, Wuhan 430060, PR China.
  • Yin TL; Reproductive Medicine Center, Wuhan University Renmin Hospital, Wuhan 430060, PR China.
  • Huo LJ; Key Laboratory of Agricultural Animal Genetics, Breeding and Reproduction of Ministry Education, College of Animal Science and Technology, Huazhong Agricultural University, Wuhan 430070, PR China. Electronic address: lijunhuo@yahoo.com.
Biochim Biophys Acta Mol Cell Res ; 1864(7): 1195-1206, 2017 Jul.
Article em En | MEDLINE | ID: mdl-28315713
Understanding the mechanisms underlying abnormal egg production and pregnancy loss is significant for human fertility. SENP7, a SUMO poly-chain editing enzyme, has been regarded as a mitotic regulator of heterochromatin integrity and DNA repair. Herein, we report the roles of SENP7 in mammalian reproductive scenario. Mouse oocytes deficient in SENP7 experienced meiotic arrest at prophase I and metaphase I stages, causing a substantial decrease of mature eggs. Hyperaceylation and hypomethylation of histone H3 and up-regulation of Cdc14B/C accompanied by down-regulation of CyclinB1 and CyclinB2 were further recognized as contributors to defective M-phase entry and spindle assembly in oocytes. The spindle assembly checkpoint activated by defective spindle morphogenesis, which was also caused by mislocalization and ubiquitylation-mediated proteasomal degradation of γ-tubulin, blocked oocytes at meiosis I stage. SENP7-depleted embryos exhibited severely defective maternal-zygotic transition and progressive degeneration, resulting in nearly no blastocyst production. The disrupted epigenetic landscape on histone H3 restricted Rad51C loading onto DNA lesions due to elevated HP1α euchromatic deposition, and reduced DNA 5hmC challenged the permissive status for zygotic DNA repair, which induce embryo death. Our study pinpoints SENP7 as a novel determinant in epigenetic programming and major pathways that govern oocyte and embryo development programs in mammals.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Endopeptidases / Blastocisto / Epigênese Genética / Herança Materna / Meiose Idioma: En Ano de publicação: 2017 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Endopeptidases / Blastocisto / Epigênese Genética / Herança Materna / Meiose Idioma: En Ano de publicação: 2017 Tipo de documento: Article