计算生物学
人类基因组
生物
素数(序理论)
遗传学
基因组
增强子
计算机科学
基因
数学
组合数学
基因表达
作者
Xingjie Ren,Han Yang,Jovia L. Nierenberg,Yifan Sun,Jiawen Chen,Cooper Beaman,Thu Pham,Mai Nobuhara,Maya Asami Takagi,Vivek Narayan,Yun Li,Elad Ziv,Yin Shen
标识
DOI:10.1101/2023.07.12.548736
摘要
Despite tremendous progress in detecting DNA variants associated with human disease, interpreting their functional impact in a high-throughput and base-pair resolution manner remains challenging. Here, we develop a novel pooled prime editing screen method, PRIME, which can be applied to characterize thousands of coding and non-coding variants in a single experiment with high reproducibility. To showcase its applications, we first identified essential nucleotides for a 716 bp MYC enhancer via PRIME-mediated saturation mutagenesis. Next, we applied PRIME to functionally characterize 1,304 non-coding variants associated with breast cancer and 3,699 variants from ClinVar. We discovered that 103 non-coding variants and 156 variants of uncertain significance are functional via affecting cell fitness. Collectively, we demonstrate PRIME capable of characterizing genetic variants at base-pair resolution and scale, advancing accurate genome annotation for disease risk prediction, diagnosis, and therapeutic target identification.
科研通智能强力驱动
Strongly Powered by AbleSci AI