Landscape of pathogenic mutations in premature ovarian insufficiency

卵巢早衰 卵巢早衰 生物 不育 遗传学 候选基因 表型 生物信息学 基因 医学 内科学 怀孕 内分泌学
作者
Hanni Ke,Shuyan Tang,Ting Guo,Dong Hou,Xue Jiao,Shan Li,Wei Luo,Bingying Xu,Shidou Zhao,Guangyu Li,Xiaoxi Zhang,Shuhua Xu,Lingbo Wang,Yanhua Wu,Jiucun Wang,Feng Zhang,Yingying Qin,Jin Li,Zi‐Jiang Chen
出处
期刊:Nature Medicine [Nature Portfolio]
卷期号:29 (2): 483-492 被引量:212
标识
DOI:10.1038/s41591-022-02194-3
摘要

Premature ovarian insufficiency (POI) is a major cause of female infertility due to early loss of ovarian function. POI is a heterogeneous condition, and its molecular etiology is unclear. To identify genetic variants associated with POI, here we performed whole-exome sequencing in a cohort of 1,030 patients with POI. We detected 195 pathogenic/likely pathogenic variants in 59 known POI-causative genes, accounting for 193 (18.7%) cases. Association analyses comparing the POI cohort with a control cohort of 5,000 individuals without POI identified 20 further POI-associated genes with a significantly higher burden of loss-of-function variants. Functional annotations of these novel 20 genes indicated their involvement in ovarian development and function, including gonadogenesis (LGR4 and PRDM1), meiosis (CPEB1, KASH5, MCMDC2, MEIOSIN, NUP43, RFWD3, SHOC1, SLX4 and STRA8) and folliculogenesis and ovulation (ALOX12, BMP6, H1-8, HMMR, HSD17B1, MST1R, PPM1B, ZAR1 and ZP3). Cumulatively, pathogenic and likely pathogenic variants in known POI-causative and novel POI-associated genes contributed to 242 (23.5%) cases. Further genotype-phenotype correlation analyses indicated that genetic contribution was higher in cases with primary amenorrhea compared to that in cases with secondary amenorrhea. This study expands understanding of the genetic landscape underlying POI and presents insights that have the potential to improve the utility of diagnostic genetic screenings.
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