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Impaired FGF signaling contributes to cleft lip and palate

机译:FGF信号传导受损可导致唇left裂

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Nonsyndromic cleft lip and palate (NS CLP) is a complex birth defect resulting from a combination of genetic and environmental factors. Several members of the FGF and FGFR families are expressed during craniofacial development and can rarely harbor mutations that result in human clefting syndromes. We hypothesized that disruptions in this pathway might also contribute to NS CLP. We sequenced the coding regions and performed association testing on 12 genes (FGFR1, FGFR2, FGFR3, FGF2, FGF3, FGF4, FGF7, FGF8, FGF9, FGF10, FGF18, and NUDT6) and used protein structure analyses to predict the function of amino acid variants. Seven likely disease-causing mutations were identified, including: one nonsense mutation (R609X) in FGFR1, a de novo missense mutation (D73H) in FGF8, and other missense variants in FGFR1, FGFR2, and FGFR3. Structural analysis of FGFR1, FGFR2, and FGF8 variants suggests that these mutations would impair the function of the proteins, albeit through different mechanisms. Genotyping of SNPs in the genes found associations between NS CLP and SNPs in FGF3, FGF7, FGF10, FGF18. and FGFR1. The data suggest that the FGF signaling pathway may contribute to as much as 3-5% of NS CLP and will be a consideration in the clinical management of CLP.
机译:非综合征性唇and裂(NS CLP)是由遗传和环境因素共同导致的复杂先天性缺陷。 FGF和FGFR家族的几个成员在颅面发育过程中表达,很少携带导致人类left裂综合征的突变。我们假设该途径的破坏也可能导致NS CLP。我们对编码区进行了测序,并对12个基因(FGFR1,FGFR2,FGFR3,FGF2,FGF3,FGF4,FGF7,FGF8,FGF9,FGF10,FGF18和NUDT6)进行了关联测试,并使用蛋白质结构分析来预测氨基酸的功能变体。确定了七个可能的致病突变,包括:FGFR1中的一个无意义突变(R609X),FGF8中的从头错义突变(D73H),以及FGFR1,FGFR2和FGFR3中的其他错义变体。 FGFR1,FGFR2和FGF8变体的结构分析表明,尽管通过不同的机制,这些突变也会损害蛋白质的功能。基因中SNP的基因分型发现NS CLP与FGF3,FGF7,FGF10,FGF18中的SNP之间存在关联。和FGFR1。数据表明,FGF信号通路可能占NS CLP的3-5%,并且将成为CLP临床管理中的考虑因素。

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