Literature DB >> 32473092

Bi-allelic Missense Pathogenic Variants in TRIP13 Cause Female Infertility Characterized by Oocyte Maturation Arrest.

Zhihua Zhang1, Bin Li2, Jing Fu3, Rong Li4, Feiyang Diao5, Caihong Li6, Biaobang Chen7, Jing Du7, Zhou Zhou1, Jian Mu1, Zheng Yan2, Ling Wu2, Shuai Liu8, Wenjing Wang1, Lin Zhao1, Jie Dong1, Lin He9, Xiaozhen Liang8, Yanping Kuang2, Xiaoxi Sun3, Qing Sang10, Lei Wang11.   

Abstract

Normal oocyte meiosis is a prerequisite for successful human reproduction, and abnormalities in the process will result in infertility. In 2016, we identified mutations in TUBB8 as responsible for human oocyte meiotic arrest. However, the underlying genetic factors for most affected individuals remain unknown. TRIP13, encoding an AAA-ATPase, is a key component of the spindle assembly checkpoint, and recurrent homozygous nonsense variants and a splicing variant in TRIP13 are reported to cause Wilms tumors in children. In this study, we identified homozygous and compound heterozygous missense pathogenic variants in TRIP13 responsible for female infertility mainly characterized by oocyte meiotic arrest in five individuals from four independent families. Individuals from three families suffered from oocyte maturation arrest, whereas the individual from the fourth family had abnormal zygote cleavage. All displayed only the infertility phenotype without Wilms tumors or any other abnormalities. In vitro and in vivo studies showed that the identified variants reduced the protein abundance of TRIP13 and caused its downstream molecule, HORMAD2, to accumulate in HeLa cells and in proband-derived lymphoblastoid cells. The chromosome mis-segregation assay showed that variants did not have any effects on mitosis. Injecting TRIP13 cRNA into oocytes from one affected individual was able to rescue the phenotype, which has implications for future therapeutic treatments. This study reports pathogenic variants in TRIP13 responsible for oocyte meiotic arrest, and it highlights the pivotal but different roles of TRIP13 in meiosis and mitosis. These findings also indicate that different dosage effects of mutant TRIP13 might result in two distinct human diseases.
Copyright © 2020 American Society of Human Genetics. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  TRIP13; female infertility; missense mutation; oocyte maturation arrest

Mesh:

Substances:

Year:  2020        PMID: 32473092      PMCID: PMC7332649          DOI: 10.1016/j.ajhg.2020.05.001

Source DB:  PubMed          Journal:  Am J Hum Genet        ISSN: 0002-9297            Impact factor:   11.025


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2.  Novel mutations in NLRP5 and PATL2 cause female infertility characterized by primarily oocyte maturation abnormality and consequent early embryonic arrest.

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Journal:  J Assist Reprod Genet       Date:  2022-01-28       Impact factor: 3.412

3.  A novel homozygous missense variant in BTG4 causes zygotic cleavage failure and female infertility.

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4.  Disrupted expression of long non-coding RNAs in the human oocyte: the possible epigenetic culprits leading to recurrent oocyte maturation arrest.

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Review 6.  Genetic factors as potential molecular markers of human oocyte and embryo quality.

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Review 7.  Getting there: understanding the chromosomal recruitment of the AAA+ ATPase Pch2/TRIP13 during meiosis.

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8.  The homozygous p.Tyr228Cys variant in CDC20 causes oocyte maturation arrest: an additional evidence supporting the causality between CDC20 mutation and female infertility.

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Review 9.  Strategies to Identify Genetic Variants Causing Infertility.

Authors:  Xinbao Ding; John C Schimenti
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Review 10.  Meiosis interrupted: the genetics of female infertility via meiotic failure.

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