HS6ST1 Insufficiency Causes Self-Limited Delayed Puberty in Contrast With Other GnRH Deficiency Genes.

与其他 GnRH 缺乏基因不同,HS6ST1 不足会导致自限性青春期延迟

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作者:Howard Sasha R, Oleari Roberto, Poliandri Ariel, Chantzara Vasiliki, Fantin Alessandro, Ruiz-Babot Gerard, Metherell Louise A, Cabrera Claudia P, Barnes Michael R, Wehkalampi Karoliina, Guasti Leonardo, Ruhrberg Christiana, Cariboni Anna, Dunkel Leo
CONTEXT: Self-limited delayed puberty (DP) segregates in an autosomal-dominant pattern, but the genetic basis is largely unknown. Although DP is sometimes seen in relatives of patients with hypogonadotropic hypogonadism (HH), mutations in genes known to cause HH that segregate with the trait of familial self-limited DP have not yet been identified. OBJECTIVE: To assess the contribution of mutations in genes known to cause HH to the phenotype of self-limited DP. DESIGN, PATIENTS, AND SETTING: We performed whole-exome sequencing in 67 probands and 93 relatives from a large cohort of familial self-limited DP, validated the pathogenicity of the identified gene variant in vitro, and examined the tissue expression and functional requirement of the mouse homolog in vivo. RESULTS: A potentially pathogenic gene variant segregating with DP was identified in 1 of 28 known HH genes examined. This pathogenic variant occurred in HS6ST1 in one pedigree and segregated with the trait in the six affected members with heterozygous transmission (P = 3.01 × 10-5). Biochemical analysis showed that this mutation reduced sulfotransferase activity in vitro. Hs6st1 mRNA was expressed in peripubertal wild-type mouse hypothalamus. GnRH neuron counts were similar in Hs6st1+/- and Hs6st1+/+ mice, but vaginal opening was delayed in Hs6st1+/- mice despite normal postnatal growth. CONCLUSIONS: We have linked a deleterious mutation in HS6ST1 to familial self-limited DP and show that heterozygous Hs6st1 loss causes DP in mice. In this study, the observed overlap in potentially pathogenic mutations contributing to the phenotypes of self-limited DP and HH was limited to this one gene.

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