Department of Biochemistry, Case Western Reserve University, Cleveland, OH 44106, USA.
Division of Pediatric Endocrinology, Ruth Children's Hospital, Rambam Medical Center, Haifa 30196, Israel.
Hum Mol Genet. 2018 Jun 1;27(11):1913-1926. doi: 10.1093/hmg/ddy098.
Primary ovarian insufficiency (POI) is characterized by amenorrhea and loss or dysfunction of ovarian follicles prior to the age of 40. POI has been associated with autosomal recessive mutations in genes involving hormonal signaling and folliculogenesis, however, the genetic etiology of POI most often remains unknown. Here we report MRPS22 homozygous missense variants c.404G>A (p.R135Q) and c.605G>A (p.R202H) identified in four females from two independent consanguineous families as a novel genetic cause of POI in adolescents. Both missense mutations identified in MRPS22 are rare, occurred in highly evolutionarily conserved residues, and are predicted to be deleterious to protein function. In contrast to prior reports of mutations in MRPS22 associated with severe mitochondrial disease, the POI phenotype is far less severe. Consistent with this genotype-phenotype correlation, mitochondrial defects in oxidative phosphorylation or rRNA levels were not detected in fibroblasts derived from the POI patients, suggesting a non-bioenergetic or tissue-specific mitochondrial defect. Furthermore, we demonstrate in a Drosophila model that mRpS22 deficiency specifically in somatic cells of the ovary had no effect on fertility, whereas flies with mRpS22 deficiency specifically in germ cells were infertile and agametic, demonstrating a cell autonomous requirement for mRpS22 in germ cell development. These findings collectively identify that MRPS22, a component of the small mitochondrial ribosome subunit, is critical for ovarian development and may therefore provide insight into the pathophysiology and treatment of ovarian dysfunction.
原发性卵巢功能不全(POI)的特征是在 40 岁之前出现闭经和卵巢卵泡丧失或功能障碍。POI 与涉及激素信号和卵泡发生的常染色体隐性基因突变有关,然而,POI 的遗传病因通常仍然未知。在这里,我们报告了在两个独立的近亲家庭中的四名女性中发现的 MRPS22 纯合错义变体 c.404G>A(p.R135Q)和 c.605G>A(p.R202H),这是青少年 POI 的一种新的遗传原因。在 MRPS22 中鉴定出的两种错义突变均为罕见,发生在高度进化保守的残基中,预计对蛋白质功能有害。与先前报道的与严重线粒体疾病相关的 MRPS22 突变不同,POI 表型要轻得多。与这种基因型-表型相关性一致,POI 患者的成纤维细胞中未检测到氧化磷酸化或 rRNA 水平的线粒体缺陷,这表明存在非生物能量或组织特异性的线粒体缺陷。此外,我们在果蝇模型中证明,mRpS22 缺陷仅在卵巢的体细胞中特异性表达对生育能力没有影响,而在生殖细胞中特异性缺乏 mRpS22 的果蝇则不育且无配子,这表明 mRpS22 在生殖细胞发育中具有细胞自主的要求。这些发现共同表明,MRPS22 是小线粒体核糖体亚基的组成部分,对于卵巢发育至关重要,因此可能为卵巢功能障碍的病理生理学和治疗提供了新的见解。