外显子组测序
桑格测序
产前诊断
胎儿
表型
遗传学
医学
生物
中枢神经系统
生物信息学
微阵列
基因检测
突变
人类遗传学
外显子组
遗传异质性
产前筛查
微阵列分析技术
基因复制
医学遗传学
大规模并行测序
怀孕
复合杂合度
病理
基因
分子遗传学
产前护理
作者
Yiyao Chen,Li Gao,X. H. Han,Yunyun Cao,Lanlan Zhang,Yi Wu,Xinrong Zhao,Wenjing Hu,R. Ma,Renyi Hua,Niu Li,Yanlin Wang,Jian Wang,Shuyuan Li
摘要
Fetal central nervous system (CNS) anomalies are among the most common congenital malformations, yet the overall prenatal diagnostic yield of current genetic testing remains below 40%. Variants in RNU4-2, a non-coding gene encoding the U4 small nuclear RNA (snRNA), have recently been linked to a novel highly recurrent dominant neurodevelopmental disorder termed ReNU syndrome. While its postnatal phenotype has been well characterized, the contribution of RNU4-2 to fetal CNS anomalies remains unexplored. In this study, we retrospectively analyzed 148 fetuses with CNS anomalies who had non-diagnostic results from karyotyping, chromosomal microarray analysis, and exome sequencing. Targeted Sanger sequencing of RNU4-2 was performed to identify pathogenic variants. Two fetuses harbored the same de novo recurrent variant, n.64_65insT, corresponding to a diagnostic yield of 1.35%. Both cases presented with microcephaly, suggesting that it is a key prenatal feature of ReNU syndrome. Furthermore, molecular confirmation of RNU4-2 resolved a decade-long diagnostic odyssey in one family by excluding an inherited Xp22.13 duplication of uncertain significance as the causal variant. In conclusion, this study provides the first systematic prenatal evaluation of RNU4-2 in fetuses with CNS anomalies, thereby expanding the prenatal phenotypic spectrum of ReNU syndrome. Incorporating RNU4-2 testing into prenatal genetic workflows may enhance diagnostic yield, enable precise genetic counseling, and support informed reproductive decision-making.
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