4.5 Article

ESR1, HK3 and BRSK1 gene variants are associated with both age at natural menopause and premature ovarian failure

期刊

出版社

BIOMED CENTRAL LTD
DOI: 10.1186/1750-1172-7-5

关键词

Premature ovarian failure (POF); Primary ovarian insufficiency (POI); Age at natural menopause (AANM); HK3; ESR1; BRSK1; Premature menopause; Hypergonadotropic hypogonadism

资金

  1. National Basic Research Program of China (973 Program) [2012CB944700, 2010CB945002, 2007CB947403, 2007CB948103]
  2. Foundation for the Author of National Excellent Doctoral Dissertation of PR China [201078]
  3. National Natural Science Foundation of China [30973170, 81000236, 81000238]
  4. Ministry of Public Health [201002013]

向作者/读者索取更多资源

Background: Premature ovarian failure (POF) is a complex and heterogeneous disorder that is influenced by multiple genetic components. Numerous candidate gene studies designed to identify POF susceptibility loci have been published, but most positive findings have not been confirmed in follow up studies. We sought to determine if sequence variants previously associated with age at natural menopause (AANM) or early menopause (EM) contribute as well to genetic susceptibility to POF. Methods: Our study was performed on 371 unrelated idiopathic women with POF and 800 women controls, all Chinese Han. Thirty six SNPs from previous genome-wide association studies (GWAS) responsible for AANM or EM and 3 additional SNPs in ESR1, and 2 additional SNPs in PTHB1 were tested using the Sequenom MassARRAY iPLEX platform for genotyping. Results: Three SNPs - rs2278493 in HK3, rs2234693 in ESR1 and rs12611091 in BRSK1 - showed nominally significant association with POF. Thus, a plausible relationship could exist between ESR1, BRSK1, HK3 and POF. Conclusions: This largest association study undertaken to determine correlation between POF and AANM/EM revealed three significant SNPs (rs2278493, rs2234693, and rs12611091). All are associated with not only AAWM and EM but also POF. Insights into shared genetic susceptibility between POF and AANM/EM will provide novel entry points for unraveling genetic mechanism involved in ovarian reserve and oocyte aging processes.

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