Medical Genomics Research Department, King Abdullah International Medical Research Center (KAIMRC), King Saud Bin Abdulaziz University for Health Sciences, Ministry of National Guard Health Affairs (MNGH), Riyadh, Saudi Arabia.
Department of Biosciences, COMSATS Institute of Information Technology, Islamabad, Pakistan.
Clin Genet. 2024 Oct;106(4):488-493. doi: 10.1111/cge.14572. Epub 2024 Jun 10.
Polydactyly is a very common digit anomaly, having extra digits in hands and/or toes. Non-syndromic polydactyly in both autosomal dominant and autosomal recessive forms are caused by disease-causing variants in several genes, including GLI1, GLI3, ZNF141, FAM92A, IQCE, KIAA0825, MIPOL1, STKLD1, PITX1, and DACH1. Whole exome sequencing (WES) followed by bi-directional Sanger sequencing was performed for the single affected individual (II-1) of the family to reveal the disease causative variant/gene. 3D protein modeling and structural molecular docking was performed to determine the effect of the identified mutation on the overall protein structure. WES revealed a novel biallelic missense variant (c.472G>C; p.Ala158Pro) in exon 6 of the FAM92A gene. The identified variant segregated perfectly with the disease phenotype using Sanger sequencing. Furthermore, Insilco analysis revealed that the variant significantly changes the protein secondary structure, and substantially impact the stability of FAM92A. We report the second FAM92A disease-causing mutation associated with recessive non-syndromic postaxial polydactyly. The data further confirms the contribution of FAM92A in limb development and patterning.
多指畸形是一种非常常见的数字异常,在手和/或脚上有多余的手指。常染色体显性和常染色体隐性形式的非综合征性多指畸形是由几个基因中的致病变异引起的,包括 GLI1、GLI3、ZNF141、FAM92A、IQCE、KIAA0825、MIPOL1、STKLD1、PITX1 和 DACH1。对家系中单个受影响个体(II-1)进行全外显子组测序(WES),然后进行双向 Sanger 测序,以揭示疾病的致病变异/基因。进行 3D 蛋白建模和结构分子对接,以确定鉴定的突变对整体蛋白结构的影响。WES 显示 FAM92A 基因外显子 6 中存在新的双等位基因错义变异(c.472G>C;p.Ala158Pro)。使用 Sanger 测序,鉴定的变异与疾病表型完全分离。此外,Insilco 分析表明,该变异显著改变了蛋白质的二级结构,并显著影响 FAM92A 的稳定性。我们报告了第二个与常染色体隐性非综合征性轴后多指畸形相关的 FAM92A 致病突变。该数据进一步证实了 FAM92A 在肢体发育和模式形成中的作用。