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High throughput in vivo functional validation of candidate congenital heart disease genes in Drosophila

机译:高通量果蝇候选先天性心脏病基因的体内功能验证

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摘要

Genomic sequencing has implicated large numbers of genes and de novo mutations as potential disease risk factors. A high throughput in vivo model system is needed to validate gene associations with pathology. We developed a Drosophila-based functional system to screen candidate disease genes identified from Congenital Heart Disease (CHD) patients. 134 genes were tested in the Drosophila heart using RNAi-based gene silencing. Quantitative analyses of multiple cardiac phenotypes demonstrated essential structural, functional, and developmental roles for more than 70 genes, including a subgroup encoding histone H3K4 modifying proteins. We also demonstrated the use of Drosophila to evaluate cardiac phenotypes resulting from specific, patient-derived alleles of candidate disease genes. We describe the first high throughput in vivo validation system to screen candidate disease genes identified from patients. This approach has the potential to facilitate development of precision medicine approaches for CHD and other diseases associated with genetic factors.>DOI:
机译:基因组测序已将大量基因和从头突变作为潜在的疾病危险因素。需要高通量的体内模型系统来验证基因与病理的关联。我们开发了一种基于果蝇的功能系统,以筛选从先天性心脏病(CHD)患者中鉴定出的候选疾病基因。使用基于RNAi的基因沉默在果蝇心脏中测试了134个基因。多种心脏表型的定量分析显示了70多个基因(包括一个编码组蛋白H3K4修饰蛋白的亚组)的必不可少的结构,功能和发育作用。我们还证明了使用果蝇来评估由候选疾病基因的患者特定等位基因产生的心脏表型。我们描述了第一个高通量体内验证系统,以筛选从患者中识别出的候选疾病基因。这种方法有可能促进针对冠心病和其他与遗传因素有关的疾病的精密医学方法的发展。> DOI:

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