生物
遗传学
等位基因
单核苷酸多态性
计算生物学
基因组
生殖系
表型
功能基因组学
基因型
基因组学
基因
作者
Megan Buckley,Chloé Terwagne,Athina Ganner,Laura Cubitt,Reid A. Brewer,Dong‐Kyu Kim,Christina M. Kajba,N. Forrester,Phoebe Dace,Joachim De Jonghe,Scott T.C. Shepherd,Chelsea Sawyer,Mairead McEwen,Sven Diederichs,Elke Neumann‐Haefelin,Samra Turajlic,Evgueni A. Ivakine,Gregory M. Findlay
出处
期刊:Nature Genetics
[Nature Portfolio]
日期:2024-07-01
卷期号:56 (7): 1446-1455
被引量:13
标识
DOI:10.1038/s41588-024-01800-z
摘要
Abstract To maximize the impact of precision medicine approaches, it is critical to identify genetic variants underlying disease and to accurately quantify their functional effects. A gene exemplifying the challenge of variant interpretation is the von Hippel–Lindautumor suppressor ( VHL ). VHL encodes an E3 ubiquitin ligase that regulates the cellular response to hypoxia. Germline pathogenic variants in VHL predispose patients to tumors including clear cell renal cell carcinoma (ccRCC) and pheochromocytoma, and somatic VHL mutations are frequently observed in sporadic renal cancer. Here we optimize and apply saturation genome editing to assay nearly all possible single-nucleotide variants (SNVs) across VHL ’s coding sequence. To delineate mechanisms, we quantify mRNA dosage effects and compare functional effects in isogenic cell lines. Function scores for 2,268 VHL SNVs identify a core set of pathogenic alleles driving ccRCC with perfect accuracy, inform differential risk across tumor types and reveal new mechanisms by which variants impact function. These results have immediate utility for classifying VHL variants encountered clinically and illustrate how precise functional measurements can resolve pleiotropic and dosage-dependent genotype–phenotype relationships across complete genes.
科研通智能强力驱动
Strongly Powered by AbleSci AI