Department of Obstetrics, Gynecology, and Reproductive Sciences, Magee-Womens Research Institute, University of Pittsburgh, Pittsburgh, PA 15213, USA.
Division of Pediatric Endocrinology, Faculty of Medicine, Cukurova University, Adana 01330, Turkey.
Am J Hum Genet. 2014 Dec 4;95(6):754-62. doi: 10.1016/j.ajhg.2014.11.002.
Premature ovarian failure (POF) is genetically heterogeneous and manifests as hypergonadotropic hypogonadism either as part of a syndrome or in isolation. We studied two unrelated consanguineous families with daughters exhibiting primary amenorrhea, short stature, and a 46,XX karyotype. A combination of SNP arrays, comparative genomic hybridization arrays, and whole-exome sequencing analyses identified homozygous pathogenic variants in MCM9, a gene implicated in homologous recombination and repair of double-stranded DNA breaks. In one family, the MCM9 c.1732+2T>C variant alters a splice donor site, resulting in abnormal alternative splicing and truncated forms of MCM9 that are unable to be recruited to sites of DNA damage. In the second family, MCM9 c.394C>T (p.Arg132(∗)) results in a predicted loss of functional MCM9. Repair of chromosome breaks was impaired in lymphocytes from affected, but not unaffected, females in both families, consistent with MCM9 function in homologous recombination. Autosomal-recessive variants in MCM9 cause a genomic-instability syndrome associated with hypergonadotropic hypogonadism and short stature. Preferential sensitivity of germline meiosis to MCM9 functional deficiency and compromised DNA repair in the somatic component most likely account for the ovarian failure and short stature.
卵巢早衰 (POF) 具有遗传异质性,表现为高促性腺激素性性腺功能减退症,既可以作为综合征的一部分出现,也可以孤立出现。我们研究了两个无血缘关系的近亲家系,其女儿均表现为原发性闭经、身材矮小和 46,XX 核型。通过 SNP 芯片、比较基因组杂交芯片和全外显子组测序分析,鉴定出 MCM9 基因中的纯合致病性变异,该基因参与同源重组和双链 DNA 断裂的修复。在一个家系中,MCM9 c.1732+2T>C 变异改变了剪接供体位点,导致 MCM9 的异常选择性剪接和截断形式,无法被募集到 DNA 损伤部位。在第二个家系中,MCM9 c.394C>T(p.Arg132(∗))导致预测的 MCM9 功能丧失。受影响但不受影响的女性的淋巴细胞中染色体断裂的修复受损,这与同源重组中 MCM9 的功能一致。MCM9 基因的常染色体隐性变异导致与高促性腺激素性性腺功能减退症和身材矮小相关的基因组不稳定性综合征。生殖系减数分裂对 MCM9 功能缺陷的优先敏感性和体细胞成分中 DNA 修复的受损可能是导致卵巢衰竭和身材矮小的原因。