生物
遗传学
生殖系
BAP1型
基因组
表型
种系突变
癌变
系谱图
人口
计算生物学
全基因组关联研究
基因型
癌症
单核苷酸多态性
突变
基因
社会学
人口学
作者
Andrew Waters,Timothy Brendler-Spaeth,Danielle Smith,Victoria Offord,Hong Kee Tan,Yajie Zhao,Sofia Obolenski,Maartje Nielsen,Remco van Doorn,Jo-Ellen Murphy,Prashant Gupta,Charlie F Rowlands,Helen Hanson,Erwan Delage,Mark Thomas,Elizabeth J. Radford,Sebastian S. Gerety,Clare Turnbull,John R. B. Perry,Matthew E. Hurles
出处
期刊:Nature Genetics
[Nature Portfolio]
日期:2024-07-01
卷期号:56 (7): 1434-1445
被引量:13
标识
DOI:10.1038/s41588-024-01799-3
摘要
Abstract Many variants that we inherit from our parents or acquire de novo or somatically are rare, limiting the precision with which we can associate them with disease. We performed exhaustive saturation genome editing (SGE) of BAP1 , the disruption of which is linked to tumorigenesis and altered neurodevelopment. We experimentally characterized 18,108 unique variants, of which 6,196 were found to have abnormal functions, and then used these data to evaluate phenotypic associations in the UK Biobank. We also characterized variants in a large population-ascertained tumor collection, in cancer pedigrees and ClinVar, and explored the behavior of cancer-associated variants compared to that of variants linked to neurodevelopmental phenotypes. Our analyses demonstrated that disruptive germline BAP1 variants were significantly associated with higher circulating levels of the mitogen IGF-1, suggesting a possible pathological mechanism and therapeutic target. Furthermore, we built a variant classifier with >98% sensitivity and specificity and quantify evidence strengths to aid precision variant interpretation.
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