A)。通过TA克隆功能验证,证实该变异导致外显子18跳跃和提前终止密码子(p.Asn511*),产生缺失叉头盒DNA结合域和核定位信号的截短蛋白。患者表现为全面发育迟缓、智力障碍、语言迟缓和自闭症特征。该研究扩展了FOXP1综合征的表型和等位基因谱,为遗传诊断提供了重要依据。" data-qmeta="description">

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分子生物学
IVD分子诊断
细胞培养与分析
蛋白研究
细胞因子
重组蛋白
抗体
高通量测序建库
病原检测UCF系列
生物医药
工具酶
抑制剂激活剂与常用试剂
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Case report: FOXP1 syndrome caused by a de novo splicing variant (c.1652+5 G>A) of the FOXP1 gene.

Min Chen, Yixi Sun, Yeqing Qian, Na Chen, Hongge Li, Liya Wang, Minyue Dong

Journal:Frontiers in Genetics

IF:4.77

DOI:10.3389/fgene.2022.926070

PMID:35991577

Published:2022-08-05

research field:氧化还原生物学线粒体生物学鱼类生理学代谢性疾病多组学分析营养生物化学水产养殖

Abstract

FOXP1 syndrome is a rare neurodevelopmental disorder characterized by global developmental delay, intellectual disability, and language delay, with or without autistic features. Several splicing variants have been reported for this condition, but most of them lack functional evidence, and the actual effects of the sequence changes are still unknown. In this study, a de novo splicing variant (c.1652 + 5 G>A) of the FOXP1 gene was identified in a patient with global developmental delay, mild intellectual disability, speech delay, and autistic features. Assessed by TA-cloning, the variant promoted the skipping of exon 18 and a premature stop codon (p.Asn511*), resulting in a predicted truncated protein. This variant, that is lacking the forkhead-box DNA-binding domain and nuclear localization signal 2, may disrupt the protein function and thus cause FOXP1 syndrome-related symptoms. Our study extends the phenotypic and allelic spectra of the FOXP1 syndrome.

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