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Large-scale analysis of de novo mutations identifies risk genes for female infertility characterized by oocyte and early embryo defects

Authors :
Qun Li
Lin Zhao
Yang Zeng
Yanping Kuang
Yichun Guan
Biaobang Chen
Shiru Xu
Bin Tang
Ling Wu
Xiaoyan Mao
Xiaoxi Sun
Juanzi Shi
Peng Xu
Feiyang Diao
Songguo Xue
Shihua Bao
Qingxia Meng
Ping Yuan
Wenjun Wang
Ning Ma
Di Song
Bei Xu
Jie Dong
Jian Mu
Zhihua Zhang
Huizhen Fan
Hao Gu
Qiaoli Li
Lin He
Li Jin
Lei Wang
Qing Sang
Source :
Genome Biology, Vol 24, Iss 1, Pp 1-23 (2023)
Publication Year :
2023
Publisher :
BMC, 2023.

Abstract

Abstract Background Oocyte maturation arrest and early embryonic arrest are important reproductive phenotypes resulting in female infertility and cause the recurrent failure of assisted reproductive technology (ART). However, the genetic etiologies of these female infertility-related phenotypes are poorly understood. Previous studies have mainly focused on inherited mutations based on large pedigrees or consanguineous patients. However, the role of de novo mutations (DNMs) in these phenotypes remains to be elucidated. Results To decipher the role of DNMs in ART failure and female infertility with oocyte and embryo defects, we explore the landscape of DNMs in 473 infertile parent–child trios and identify a set of 481 confident DNMs distributed in 474 genes. Gene ontology analysis reveals that the identified genes with DNMs are enriched in signaling pathways associated with female reproductive processes such as meiosis, embryonic development, and reproductive structure development. We perform functional assays on the effects of DNMs in a representative gene Tubulin Alpha 4a (TUBA4A), which shows the most significant enrichment of DNMs in the infertile parent–child trios. DNMs in TUBA4A disrupt the normal assembly of the microtubule network in HeLa cells, and microinjection of DNM TUBA4A cRNAs causes abnormalities in mouse oocyte maturation or embryo development, suggesting the pathogenic role of these DNMs in TUBA4A. Conclusions Our findings suggest novel genetic insights that DNMs contribute to female infertility with oocyte and embryo defects. This study also provides potential genetic markers and facilitates the genetic diagnosis of recurrent ART failure and female infertility.

Details

Language :
English
ISSN :
1474760X
Volume :
24
Issue :
1
Database :
Directory of Open Access Journals
Journal :
Genome Biology
Publication Type :
Academic Journal
Accession number :
edsdoj.7aeded40b7b348c2bfc1fc31390d87f6
Document Type :
article
Full Text :
https://doi.org/10.1186/s13059-023-02894-0