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A novel missense variant in the GLI3 zinc finger domain in a family with digital anomalies

机译:一个具有数字异常的家庭GLI3锌指域中的新型畸形变种

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摘要

Mutations in GLI3 , which encodes a transcription factor of the Hedgehog signaling pathway, cause several developmental anomalies linked to inappropriate tissue patterning. Here, we report a novel missense variant in the fifth zinc finger domain of GLI3 (c.1826GA; p.(Cys609Tyr)) initially identified in a proband with preaxial polydactyly type IV, developmental delay, sensorineural hearing loss, skeletal, and genitourinary anomalies. Additional family members exhibited various digital anomalies such as preaxial polydactyly, syndactyly, and postaxial polydactyly either in isolation or combined. Functional studies of Cys609Tyr GLI3 in cultured cells showed abnormal GLI3 processing leading to decreased GLI3 repressor production, increased basal transcriptional activity, and submaximal GLI reporter activity with Hedgehog pathway activation, thus demonstrating an intriguing molecular mechanism for this GLI3‐related phenotype. Given the complexity of GLI3 post‐translational processing and opposing biological functions as a transcriptional activator and repressor, our findings highlight the importance of performing functional studies of presumed GLI3 variants. This family also demonstrates how GLI3 variants are variably expressed.
机译:GLI3中的突变,其编码刺猬信号传导途径的转录因子,导致若干发育异常与不适当的组织图案相关联。在这里,我们在GLI3(C.1826G> a; p。(Cys609te)的第五个锌指结构域中报告了一种新的畸形变体最初在术语中初始识别,具有术语,具有术语多元派系IV,发育延迟,感官听力损失,骨骼和泌尿生殖异常。额外的家庭成员在分离或组合中表现出各种数字异常,如术术多淀粉,综合性和季倍乳状物。培养细胞Cys609TyR1的功能研究表明,GLI3降低的GLI3加工异常,基础转录活性增加,以及刺猬途径激活的潜水腺素GLI报告活性,从而表明该GLI3相关表型的有趣分子机制。鉴于翻译后加工后的复杂性和相反的生物学功能作为转录激活剂和阻遏物,我们的研究结果突出了对推定GLI3变体进行功能研究的重要性。这个家庭还展示了GLI3变体是如何可变表达的。

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