Literature DB >> 27140828

Loss of Bmal1 decreases oocyte fertilization, early embryo development and implantation potential in female mice.

Jian Xu1, Yan Li2, Yizi Wang3, Yanwen Xu4, Canquan Zhou4.   

Abstract

Biological clock genes expressed in reproductive tissues play important roles in maintaining the normal functions of reproductive system. However, disruption of female circadian rhythm on oocyte fertilization, preimplantation embryo development and blastocyst implantation potential is still unclear. In this study, ovulation, in vivo and in vitro oocyte fertilization, embryo development, implantation and intracellular reactive oxygen species (ROS) levels in ovary and oviduct were studied in female Bmal1+/+ and Bmal1-/- mice. The number of naturally ovulated oocyte in Bmal1-/- mice decreased (5.2 ± 0.8 vs 7.8 ± 0.8, P < 0.001), with an increasing abnormal oocyte ratio (20.4 ± 3.5 vs 11.7 ± 2.0%, P = 0.001) after superovulation. Significantly lower fertilization rate and obtained blastocyst number were observed in Bmal1-/- female mice either mated with wild-type in vivo or fertilized by sperm from wild-type male mice in vitro (all P < 0.05). Interestingly, in vitro fertilization rate of oocytes derived from Bmal1-/- increased significantly compared with in vivo study (P < 0.01). After transferring blastocysts derived from Bmal1+/+ and Bmal1-/- female mice to pseudopregnant mice, the implantation sites of the latter decreased 5 days later (8.0 ± 0.8 vs 5.3 ± 1.0, P = 0.005). The intracellular ROS levels in the ovary on proestrus day and in the oviduct on metestrus day increased significantly in Bmal1-/- mice compared with that of Bmal1+/+ mice. Deletion of the core biological clock gene Bmal1 significantly decreases oocyte fertilization rate, early embryo development and implantation potential in female mice, and these may be possibly caused by excess ROS levels generated in ovary and oviduct.

Entities:  

Keywords:  Bmal1−/−zzm321990 mice; Embryo development; Fertilization; Implantation; ROS

Mesh:

Substances:

Year:  2016        PMID: 27140828     DOI: 10.1017/S0967199416000083

Source DB:  PubMed          Journal:  Zygote        ISSN: 0967-1994            Impact factor:   1.442


  11 in total

1.  Role of core circadian clock genes in hormone release and target tissue sensitivity in the reproductive axis.

Authors:  Aritro Sen; Hanne M Hoffmann
Journal:  Mol Cell Endocrinol       Date:  2019-11-19       Impact factor: 4.102

Review 2.  Cross-species physiological interactions of endocrine disrupting chemicals with the circadian clock.

Authors:  Lisa N Bottalico; Aalim M Weljie
Journal:  Gen Comp Endocrinol       Date:  2020-11-07       Impact factor: 2.822

3.  Growth Hormone Pulses and Liver Gene Expression Are Differentially Regulated by the Circadian Clock Gene Bmal1.

Authors:  Erica L Schoeller; Karen J Tonsfeldt; McKenna Sinkovich; Rujing Shi; Pamela L Mellon
Journal:  Endocrinology       Date:  2021-04-01       Impact factor: 4.736

4.  BMAL1 facilitates trophoblast migration and invasion via SP1-DNMT1/DAB2IP pathway in recurrent spontaneous abortion.

Authors:  Shang Li; Junyu Zhai; Jiansheng Liu; Yan Hong; Weixiu Zhao; Aimin Zhao; Kang Sun; Yanzhi Du; Zi-Jiang Chen
Journal:  Oncotarget       Date:  2017-09-07

5.  Circadian BMAL1 regulates mandibular condyle development by hedgehog pathway.

Authors:  Shaoling Yu; Qingming Tang; Mengru Xie; Xin Zhou; Yanlin Long; Yanling Xie; Fengyuan Guo; Lili Chen
Journal:  Cell Prolif       Date:  2019-11-20       Impact factor: 6.831

6.  Analysis of differences in the transcriptomic profiles of eutopic and ectopic endometriums in women with ovarian endometriosis.

Authors:  Jinfeng Xue; Xiaowen Tong; Xiao Feng; Lingbin Qi; Xiaoyu Xu; Yun Feng; Xiaoming Gong; Aixingzi Aili; Yu Chen; Zhigang Xue
Journal:  PeerJ       Date:  2021-04-07       Impact factor: 2.984

Review 7.  Circadian Clock, Time-Restricted Feeding and Reproduction.

Authors:  Xiaoyue Pan; Meredith J Taylor; Emma Cohen; Nazeeh Hanna; Samantha Mota
Journal:  Int J Mol Sci       Date:  2020-01-28       Impact factor: 5.923

8.  BMAL1 coordinates energy metabolism and differentiation of pluripotent stem cells.

Authors:  Cristina Ameneiro; Tiago Moreira; Alejandro Fuentes-Iglesias; Alba Coego; Vera Garcia-Outeiral; Adriana Escudero; Daniel Torrecilla; Sonia Mulero-Navarro; Jose Maria Carvajal-Gonzalez; Diana Guallar; Miguel Fidalgo
Journal:  Life Sci Alliance       Date:  2020-04-13

Review 9.  Melatonin, Its Beneficial Effects on Embryogenesis from Mitigating Oxidative Stress to Regulating Gene Expression.

Authors:  Dmitry Ivanov; Gianluigi Mazzoccoli; George Anderson; Natalia Linkova; Anastasiia Dyatlova; Ekaterina Mironova; Victoria Polyakova; Igor Kvetnoy; Inna Evsyukova; Annalucia Carbone; Ruslan Nasyrov
Journal:  Int J Mol Sci       Date:  2021-05-30       Impact factor: 5.923

Review 10.  Drivers of phenotypic variation in cartilage: Circadian clock genes.

Authors:  Xiaopeng Song; Hui Bai; Xinghua Meng; Jianhua Xiao; Li Gao
Journal:  J Cell Mol Med       Date:  2021-07-02       Impact factor: 5.310

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