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Molecular Genetic Characterization of a Chinese Family with Severe Split Hand/Foot Malformation

机译:分子遗传学特征的中国家庭有严重分裂手/脚畸形

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Aims: Split hand/foot malformation (SHFM) is a congenital limb malformation characterized by underdeveloped or absent central digital rays, clefts of the hands and feet, and variable syndactyly of the remaining digits. SHFM is a genetically heterogeneous disease; the aim of this study was to identify pathogenic variations in a Chinese family with SHFM. Materials and Methods: Haplotype analyses with microsatellite markers covering the five SHFM loci were performed to localize the causative locus. Real-time quantitative polymerase chain reaction (qPCR) assays and inverse PCR were performed to determine the copy number variations and to amplify junction breakpoints in affected individuals. Candidate genes were further screened for mutations through Sanger sequencing. Results: A potential haplotype in the SHFM3 locus was shared by all affected individuals. qPCR and inverse PCR showed a microduplication at chromosome 10q24 spanning 488,859bp and encompassing five entire genes, LBX1, BTRC, POLL, DPCD, and FBXW4, that co-segregated with the SHFM phenotype. No coding or splice-site mutations of these genes were found. Conclusion: We determined the molecular basis of SHFM in a Chinese family by haplotype analysis, qPCR, inverse PCR, and Sanger sequencing. Our work extends the clinical spectrum of SHFM3; provides a fine-scale delineation of the chromosomal breakpoints helping to narrow the critical region of SHFM3; and facilitates an understanding of the mechanisms underlying abnormal limb development and extraskeletal anomalies.
机译:目的:分离手/脚畸形(SHFM)先天性肢体畸形的特征不发达或缺席中央数字射线,手和脚的石穴,变量并指剩下的数字。遗传异质性疾病;本研究旨在确定致病性变异在一个中国家庭SHFM。方法:单体型与微卫星分析标记覆盖五SHFM位点进行本地化的轨迹。实时定量聚合酶链反应(qPCR)化验和反向PCR进行确定拷贝数变化和放大结断点在受影响个人。通过Sanger测序筛查突变。结果:一个潜在的单体型SHFM3轨迹是共享的所有受影响的个人。反向PCR显示microduplication10号染色体抓起跨越488859个基点包括五个完整的基因,LBX1 BTRC,民意调查,和FBXW4 DPCD, co-segregated SHFM表现型。这些基因被发现。在一个中国家庭SHFM的分子基础通过单体型分析,qPCR、反向PCR和桑格测序。SHFM3频谱;描述的染色体断点帮助缩小SHFM3的临界区;并促进理解机制不正常肢体发展和extraskeletal异常。

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