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Prioritizing causal disease genes using unbiased genomic features

机译:利用无偏基因组特征对因果疾病基因进行优先排序

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Background: Cardiovascular disease (CVD) is the leading cause of death in the developed world. Human genetic studies, including genome-wide sequencing and SNP-array approaches, promise to reveal disease genes and mechanisms representing new therapeutic targets. In practice, however, identification of the actual genes contributing to disease pathogenesis has lagged behind identification of associated loci, thus limiting the clinical benefits. Results: To aid in localizing causal genes, we develop a machine learning approach, Objective Prioritization for Enhanced Novelty (OPEN), which quantitatively prioritizes gene-disease associations based on a diverse group of genomic features. This approach uses only unbiased predictive features and thus is not hampered by a preference towards previously well-characterized genes. We demonstrate success in identifying genetic determinants for CVD-related traits, including cholesterol levels, blood pressure, and conduction system and cardiomyopathy phenotypes. Using OPEN, we prioritize genes, including FLNC, for association with increased left ventricular diameter, which is a defining feature of a prevalent cardiovascular disorder, dilated cardiomyopathy or DCM. Using a zebrafish model, we experimentally validate FLNC and identify a novel FLNC splice-site mutation in a patient with severe DCM. Conclusion: Our approach stands to assist interpretation of large-scale genetic studies without compromising their fundamentally unbiased nature.
机译:背景:心血管疾病(CVD)是发达国家的主要死亡原因。人类遗传学研究,包括全基因组测序和SNP阵列方法,有望揭示代表新治疗靶标的疾病基因和机制。然而,实际上,鉴定导致疾病发病机理的实际基因落后于鉴定相关基因座,因此限制了临床益处。结果:为了帮助定位因果基因,我们开发了一种机器学习方法,即“增强型新颖性的客观优先排序(OPEN)”,该方法根据不同的基因组特征对基因-疾病关联进行定量优先排序。该方法仅使用无偏见的预测特征,因此不会因偏向于先前特征明确的基因而受到阻碍。我们展示了成功地确定与CVD相关的性状,包括胆固醇水平,血压,传导系统和心肌病表型的遗传决定因素。使用OPEN,我们可以对包括FLNC在内的基因进行优先排序,以与增加的左心室直径相关联,这是普遍的心血管疾病,扩张型心肌病或DCM的定义特征。使用斑马鱼模型,我们通过实验验证了FLNC并在患有严重DCM的患者中鉴定出新的FLNC剪接位点突变。结论:我们的方法旨在协助大规模遗传研究的解释,而不会损害其根本上无偏见的本质。

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