Gui Hongsheng, Kwan Johnny S, Sham Pak C, Cherny Stacey S, Li Miaoxin
Center for Genomic Sciences, University of Hong Kong, Hong Kong SAR, China.
Center for Health Policy and Health Services Research, Henry Ford Health System, Detroit, Michigan 48202.
Genetics. 2017 Jul;206(3):1601-1609. doi: 10.1534/genetics.116.198150. Epub 2017 May 11.
Evidence from genome-wide association studies (GWAS) suggest that pleiotropic effects on human complex phenotypes are very common. Recently, an atlas of genetic correlations among complex phenotypes has broadened our understanding of human diseases and traits. Here, we examine genetic overlap, from a gene-centric perspective, among the same 24 phenotypes previously investigated for genetic correlations. After adopting the multilevel pipeline (freely available at http://grass.cgs.hku.hk/limx/kgg/), which includes intragenic single nucleotide polymorphisms (SNPs), genes, and gene-sets, to estimate genetic similarities across phenotypes, a large amount of sharing of several biologically related phenotypes was confirmed. In addition, significant genetic overlaps were also found among phenotype pairs that were previously unidentified by SNP-level approaches. All these pairs with new genetic links are supported by earlier epidemiological evidence, although only a few of them have pleiotropic genes in the GWAS Catalog. Hence, our gene and gene-set analyses are able to provide new insights into cross-phenotype connections. The investigation on genetic sharing at three different levels presents a complementary picture of how common DNA sequence variations contribute to disease comorbidities and trait manifestations.
全基因组关联研究(GWAS)的证据表明,对人类复杂表型的多效性影响非常普遍。最近,一份复杂表型之间遗传相关性的图谱拓宽了我们对人类疾病和性状的理解。在这里,我们从以基因为中心的角度,研究了之前针对遗传相关性进行研究的相同24种表型之间的遗传重叠。在采用了包括基因内单核苷酸多态性(SNP)、基因和基因集的多层次流程(可从http://grass.cgs.hku.hk/limx/kgg/免费获取)来估计不同表型之间的遗传相似性之后,证实了几种生物学相关表型存在大量共享。此外,在之前SNP水平方法未识别的表型对之间也发现了显著的遗传重叠。所有这些具有新遗传联系的表型对都得到了早期流行病学证据的支持,尽管在GWAS目录中只有少数表型对具有多效性基因。因此,我们的基因和基因集分析能够为跨表型联系提供新的见解。在三个不同水平上对遗传共享的研究,呈现了一幅关于常见DNA序列变异如何导致疾病共病和性状表现的互补图景。