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首页> 外文期刊>BMC Medical Genetics >A novel GLI3 mutation affecting the zinc finger domain leads to preaxial-postaxial polydactyly-syndactyly complex
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A novel GLI3 mutation affecting the zinc finger domain leads to preaxial-postaxial polydactyly-syndactyly complex

机译:影响锌指结构域的新型GLI3突变导致初始逐乳薄层 - 综合性复合物

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摘要

Background Polydactyly is a highly common congenital limb defect. Extra digits may appear as an isolated anomaly or as a part of a syndrome. Mutations in GLI3 have been shown to cause Greig cephalopolysyndactyly, Pallister-Hall syndrome and non-syndromic polydactyly. Genotype-phenotype correlation studies of GLI3 mutations suggest a model by which mutations in the zinc-finger domain (ZFD) of GLI3 likely lead to syndromic polydactyly. Here we describe a rare case of autosomal dominant heterozygous missense mutation in the ZFD of GLI3 leading to a variable polydactyly-syndactyly complex. Case presentation A large Jewish Moroccan family presented with apparently autosomal dominant heredity of bilateral thumb polydactyly in hands and feet combined with post-axial polydactyly type B or type A. Syndactyly was evident in most patients’ hands and feet. Apart from head circumference beyond 90th percentile in some of the affected individuals, none had craniofacial dysmorphism. A novel GLI3 c.1802A >?G (p.His601Arg) mutation was found in all affected individuals. Conclusion We demonstrate that a mutation in the ZFD domain of GLI3 leads to phenotypic variability, including an isolated limb phenotype. Thus, the variability in phenotypes caused by mutations in this master developmental regulator is more profound than has been previously suggested.
机译:背景技术多乳淀粉是一种高常见的先天性肢体缺陷。额外的数字可能显示为孤立的异常或综合症的一部分。已显示GLI3中的突变导致Greig Cephalopolysyndactyly,Pallister-Hall综合征和非综合征的多乳淀粉。 Gli3突变的基因型 - 表型相关性研究表明GLI3的锌 - 手指结构域(ZFD)中的突变可能导致综合征多乳薄膜的模型。在这里,我们描述了GLI3 ZFD中的常染色体显性杂合的畸变突变的罕见情况,导致可变的多乳糖 - 综合性复合物。案例介绍一个大型犹太摩洛哥家族,呈现出在手中的双侧拇指的明显常染色体占主导地位的杂种,与轴上多乳扁型B或A型。在大多数患者的手脚中显而易见。除了超过90 th 百分位的头围,没有患有颅面的烦躁杂志。在所有受影响的个体中发现了一种新的GLI3 C.1802A>?G(p.his601arg)突变。结论我们证明GLI3 ZFD结构域的突变导致表型变异性,包括分离的肢体表型。因此,由该主发育调节器中的突变引起的表型的可变性比以前所提出的更深刻。

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