4.5 Article

FSHB Transcription is Regulated by a Novel 5′ Distal Enhancer With a Fertility-Associated Single Nucleotide Polymorphism

期刊

ENDOCRINOLOGY
卷 162, 期 1, 页码 -

出版社

ENDOCRINE SOC
DOI: 10.1210/endocr/bqaa181

关键词

Fertility; PCOS; gonadotropins; FSH; FSHB; enhancer

资金

  1. National Institutes of Health (NIH) Eunice Kennedy Shriver National Institute of Child Health and Human Development (NICHD) as part of the National Centers for Translational Research in Reproduction and Infertility [R01 HD082567, HD100580, HD072754, P50 HD012303]
  2. NIH [P30 DK063491, P30 CA023100, P42 ES010337, F31 HD096838, T32 NS061847, R01 HD095412, R01 EY027011]
  3. RPB Special Scholar Award

向作者/读者索取更多资源

This study identified a novel upstream regulator of FSHB transcription and indicated that rs11031006 can modulate FSH levels.
The pituitary gonadotropins, follicle-stimulating hormone (FSH) and luteinizing hormone, signal the gonads to regulate male and female fertility. FSH is critical for female fertility as it regulates oocyte maturation, ovulation, and hormone synthesis. Multiple genome-wide association studies (GWAS) link a 130 Kb locus at 11p14.1, which encompasses the FSH beta-subunit (FSHB) gene, with fertility-related traits that include polycystic ovary syndrome, age of natural menopause, and dizygotic twinning. The most statistically significant single nucleotide polymorphism from several GWAS studies (rs11031006) resides within a highly conserved 450 bp region 26 Kb upstream of the human FSHB gene. Given that sequence conservation suggests an important biological function, we hypothesized that the region could regulate FSHB transcription. In luciferase assays, the conserved region enhanced FSHB transcription and gel shifts identified a binding site for Steroidogenic factor 1 (SF1) contributing to its function. Analysis of mouse pituitary single-cell ATAC-seq demonstrated open chromatin at the conserved region exclusive to a gonadotrope cell-type cluster. Additionally, enhancer-associated histone markers were identified by immunoprecipitation of chromatin from mouse whole pituitary and an immortalized mouse gonadotrope-derived L beta T2 cell line at the conserved region. Furthermore, we found that the rs11031006 minor allele upregulated FSHB transcription via increased SF1 binding to the enhancer. All together, these results identify a novel upstream regulator of FSHB transcription and indicate that rs11031006 can modulate FSH levels.

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