Research Group Human Genetics, Division of Medical Genetics, Department of Biomedicine and University Children's Hospital, Basel, Switzerland.
Fertil Steril. 2011 Oct;96(4):851-5. doi: 10.1016/j.fertnstert.2011.07.1137. Epub 2011 Aug 24.
To investigate the familial segregation, role, and function of a novel SRY missense mutation c.347T>C in two half-sisters affected by 46,XY complete gonadal dysgenesis (CDG) compatible with a successful pregnancy outcome.
Phenotypic, mutational, and functional study.
Academic research unit.
PATIENT(S): Two half-sisters, their common father, and 100 healthy control individuals.
INTERVENTION(S): Chromosome, molecular cytogenetic analysis, and Sanger sequencing of the SRY gene in blood lymphocytes of the proband, her affected half-sister, and in inflammatory tissue of the father postmortem. Cloning and expression of high mobility group box carboxy-terminal domains of Sry and electrophoretic mobility shift assay were performed.
MAIN OUTCOME MEASURE(S): Not applicable.
RESULT(S): A novel SRY missense mutation c.347T>C (p.Leu116Ser) was identified in two half-sisters and segregates with the CGD phenotype. It is present in the common healthy father in a mosaic state. Functional analyses demonstrate the pathogenic effect of the mutation by a strong reduction of DNA affinity for the mutant p.Leu116Ser SRY protein.
CONCLUSION(S): The missense mutation c.347T>C in the high mobility group domain of SRY causes 46,XY CGD. Paternal gonadal mosaicism is likely to explain the familial occurrence of 46,XY CGD suggesting a de novo mutational event during the early stages of embryonic development. This novel mutation is compatible with a successful pregnancy outcome.
研究两个受影响的 46,XY 完全性腺发育不全(CGD)的半姐妹中新型 SRY 错义突变 c.347T>C 的家族分离、作用和功能,该突变与成功的妊娠结局兼容。
表型、突变和功能研究。
学术研究单位。
两个半姐妹、她们共同的父亲,以及 100 名健康对照个体。
染色体、分子细胞遗传学分析,以及对先证者、受影响的半姐妹及其父亲死后炎症组织中血液淋巴细胞的 SRY 基因进行 Sanger 测序。高迁移率族蛋白羧基末端结构域的 Sry 克隆和表达,以及电泳迁移率变动分析。
不适用。
在两个半姐妹和 CGD 表型中发现了新型 SRY 错义突变 c.347T>C(p.Leu116Ser),该突变存在于共同的健康父亲的嵌合体中。功能分析表明该突变具有致病性,其突变 p.Leu116Ser SRY 蛋白对 DNA 的亲和力大大降低。
SRY 高迁移率组中的错义突变 c.347T>C 导致 46,XY CGD。父亲的性腺嵌合很可能解释了 46,XY CGD 的家族发生,提示在胚胎发育早期发生了新生突变事件。这种新型突变与成功的妊娠结局兼容。