The identification of novel mutations in PLCZ1 responsible for human fertilization failure and a therapeutic intervention by artificial oocyte activation

Author:

Mu Jian1,Zhang Zhihua1,Wu Ling2,Fu Jing3,Chen Biaobang1,Yan Zheng2,Li Bin2,Zhou Zhou1,Wang Wenjing1,Zhao Lin1,Dong Jie1,Kuang Yanping2,Sun Xiaoxi3,He Lin4ORCID,Wang Lei156,Sang Qing15ORCID

Affiliation:

1. Institute of Pediatrics, Children’s Hospital of Fudan University; Institutes of Biomedical Sciences, State Key Laboratory of Genetic Engineering, Fudan University, Shanghai, 200032

2. Reproductive Medicine Center, Shanghai Ninth Hospital, Shanghai Jiao Tong University, Shanghai 200011, China

3. Shanghai Ji Ai Genetics and IVF Institute, Obstetrics and Gynecology Hospital, Fudan University, Shanghai 200011, China

4. Bio-X Center, Key Laboratory for the Genetics of Developmental and Neuropsychiatric Disorders, Ministry of Education, Shanghai Jiao Tong University, Shanghai 200030, China

5. Zhuhai Fudan Innovation Institute, Zhuhai, Guangdong 519000, China

6. Shanghai Center for Women and Children's Health, Shanghai, 200062, China

Abstract

Abstract Fertilization involves a series of molecular events immediately following egg–sperm fusion; Ca2+ oscillations are the earliest signaling event, and they initiate the downstream reactions including pronucleus formation. Successful human reproduction requires normal fertilization. In clinical IVF or ICSI attempts, some infertile couples suffer from recurrent fertilization failure. However, the genetic reasons for fertilization failure are largely unknown. Here, we recruited several couples diagnosed with fertilization failure even though their gametes are morphologically normal. Through whole-exome sequencing and Sanger sequencing, we identified biallelic mutations in gene-encoding phospholipase C zeta 1 (PLCZ1) in four independent males in couples diagnosed with fertilization failure. Western blotting showed that missense mutations decreased the level of PLCZ1 and that nonsense or frameshift mutations resulted in undetectable or truncated proteins. Expression of these mutations in mice significantly reduced the levels of oocyte activation. Artificial oocyte activation in patient oocytes could rescue the phenotype of fertilization failure and help establish pregnancy and lead to live birth. Our findings expand the spectrum of PLCZ1 mutations that are responsible for human fertilization failure and provide a potentially feasible therapeutic treatment for these patients.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Shanghai Rising Star Program

Natural Science Foundation of Shanghai

Foundation of Shanghai Health and Family Planning Commission

Shanghai Municipal Science and Technology Commission

China Postdoctoral Science Foundation Funded Project

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,Obstetrics and Gynaecology,Genetics,Molecular Biology,Embryology,Reproductive Medicine

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