访问量:   最后更新时间:--

胡学海

博士生导师
硕士生导师
教师姓名:胡学海
教师拼音名称:huxuehai
职务:大数据系系主任
职称:教授
学历:博士研究生毕业
学位:理学博士学位
办公地点:逸夫楼C609
电子邮箱:
毕业院校:武汉大学
所属院系:信息学院
所在单位:信息学院
学科:统计学其他专业    生物信息学    
其他联系方式
论文成果
A statistical framework for predicting critical regions of p53-dependent enhancers
发布时间:2021-04-30    点击次数:

DOI码:10.1093/bib/bbaa053

教研室:生物统计

发表刊物:Briefings in Bioinformatics

关键字:critical enhancer regions; computational CRISPR; p53; K-mer; TF motifs

摘要:P53 is the ‘guardian of the genome’ and is responsible for regulating cell cycle and apoptosis. The genomic p53 binding regions, where activating transcriptional factors and cofactors like p300 simultaneously bind, are called ‘p53-dependent enhancers’, which play an important role in tumorigenesis. Current experimental assays generally provide a broad peak of each enhancer element, leaving our knowledge about critical enhancer regions (CERs) limited. Under the inspiration of enhancer dissection by CRISPR-Cas9 screen library on genome-wide p53 binding sites, here we introduce a statistical framework called ‘Computational CRISPR Strategy’ (CCS), to predict whether a given DNA fragment will be a p53-dependent CER by employing 7-mer as feature extractions along with random forest as the regressor. When training on a p53 CRISPR enhancer dataset, CCS not only accurately fitted the top-ranked enriched single guide RNAs (sgRNAs) but also successfully reproduced two known CERs that were validated by experiments. When applying it to an independent testing dataset on a tilling of a 2K-b genomic region of CRISPR-deCDKN1A-Lib, the trained model shows great generalizability by identifying a CER containing five top-ranked sgRNAs. A feature importance analysis further indicates that top-ranked 7-mers are mapped onto informative TF motifs including POU5F1 and SOX5, which are differentially enriched in p53-dependent CERs and are potential factors to make a general p53 binding site to form a p53-dependent CER, providing the interpretability of the trained model. Our results demonstrate that CCS is an alternative way of the CRISPR experiment to screen the genome for mapping p53-dependent CERs.

论文类型:期刊论文

是否译文:

发表时间:2021-01-01

收录刊物:SCI