生物
计算生物学
蛋白质组
循环(图论)
DNA复制
DNA
细胞生物学
遗传学
组合数学
数学
作者
Louis-Alexandre Fournier,Arun Kumar,Theodore G. Smith,Edmund Su,Michelle Moksa,Martin Hirst,Peter C. Stirling
出处
期刊:
[Cold Spring Harbor Laboratory]
日期:2021-08-09
被引量:2
标识
DOI:10.1101/2021.08.09.454968
摘要
ABSTRACT In the past decade there has been a growing appreciation for R-loop structures as important regulators of the epigenome, telomere maintenance, DNA repair and replication. Given these numerous functions, dozens, or potentially hundreds, of proteins could serve as direct or indirect regulators of R-loop writing, reading, and erasing. In order to understand common properties shared amongst potential R-loop binding proteins (RLBPs) we mined published proteomic studies and distilled 10 features that were enriched in RLBPs compared to the rest of the proteome. We used these RLBP-specific features along with their amino acid composition to create a random forest classifier which predicts the likelihood of a protein to bind to R-loops. In parallel, we employed a whole-genome CRISPR screen coupled with flow-cytometry using the S9.6 monoclonal antibody to sort guide RNAs associated with induction of high S9.6 staining. Known R-loop regulating pathways such as splicing and DNA damage repair are highly enriched in our datasets, and we validate two new R-loop modulating proteins. Together these resources provide a reference to pursue analyses of novel R-loop regulatory proteins.
科研通智能强力驱动
Strongly Powered by AbleSci AI