Yao Victoria, Kaletsky Rachel, Keyes William, Mor Danielle E, Wong Aaron K, Sohrabi Salman, Murphy Coleen T, Troyanskaya Olga G
Department of Computer Science, Princeton University, Princeton, New Jersey, USA.
Lewis-Sigler Institute for Integrative Genomics, Princeton University, Princeton, New Jersey, USA.
Nat Biotechnol. 2018 Oct 22. doi: 10.1038/nbt.4246.
Effective discovery of causal disease genes must overcome the statistical challenges of quantitative genetics studies and the practical limitations of human biology experiments. Here we developed diseaseQUEST, an integrative approach that combines data from human genome-wide disease studies with in silico network models of tissue- and cell-type-specific function in model organisms to prioritize candidates within functionally conserved processes and pathways. We used diseaseQUEST to predict candidate genes for 25 different diseases and traits, including cancer, longevity, and neurodegenerative diseases. Focusing on Parkinson's disease (PD), a diseaseQUEST-directed Caenhorhabditis elegans behavioral screen identified several candidate genes, which we experimentally verified and found to be associated with age-dependent motility defects mirroring PD clinical symptoms. Furthermore, knockdown of the top candidate gene, bcat-1, encoding a branched chain amino acid transferase, caused spasm-like 'curling' and neurodegeneration in C. elegans, paralleling decreased BCAT1 expression in PD patient brains. diseaseQUEST is modular and generalizable to other model organisms and human diseases of interest.
有效发现致病基因必须克服定量遗传学研究的统计挑战以及人类生物学实验的实际限制。在此,我们开发了diseaseQUEST,这是一种整合方法,将来自人类全基因组疾病研究的数据与模式生物中组织和细胞类型特异性功能的计算机网络模型相结合,以便在功能保守的过程和途径中对候选基因进行优先级排序。我们使用diseaseQUEST预测了25种不同疾病和性状的候选基因,包括癌症、长寿和神经退行性疾病。以帕金森病(PD)为例,通过diseaseQUEST指导的秀丽隐杆线虫行为筛选确定了几个候选基因,我们通过实验验证并发现这些基因与反映PD临床症状的年龄依赖性运动缺陷有关。此外,敲低排名靠前的候选基因bcat-1(编码一种支链氨基酸转移酶)会导致秀丽隐杆线虫出现痉挛样“卷曲”和神经退行性变,这与PD患者大脑中BCAT1表达降低情况相似。diseaseQUEST具有模块性,可推广到其他模式生物和感兴趣的人类疾病。