TY - JOUR
T1 - Surveying mutation density patterns around specific genomic features
AU - Yu, Hui
AU - Ness, Scott
AU - Li, Chung I.
AU - Bai, Yongsheng
AU - Mao, Peng
AU - Guo, Yan
N1 - Publisher Copyright:
© 2022 Yu et al.; Published by Cold Spring Harbor Laboratory Press.
PY - 2022/10/1
Y1 - 2022/10/1
N2 - Mutation density patterns reveal unique biological properties of specific genomic regions and shed light on the mechanisms of carcinogenesis. Although previous studies reported insightful mutation density patterns associated with certain genomic regions such as transcription start sites and DNA replication origins, a tool that can systematically investigate mutational spatial patterns is still lacking. Thus, we developed MutDens, a bioinformatic tool for comprehensive analysis of mutation density patterns around genomic features, namely, genomic positions, in humans and model species. By scanning the bidirectional vicinity regions of given positions, MutDens systematically characterizes the mutation density for single-base substitution mutational classes after adjusting for total mutation burden and local nucleotide proportion. Analysis results using MutDens not only verified the previously reported transcriptional strand bias around transcription start sites and replicative strand bias around DNA replication origins, but also identified novel mutation density patterns around other genomics features, such as enhancers and retrotransposon insertion polymorphism sites. To our knowledge, MutDens is the first tool that systematically calculates, examines, and compares mutation density patterns, thus providing a valuable avenue for investigating the mutational landscapes associated with important genomic features.
AB - Mutation density patterns reveal unique biological properties of specific genomic regions and shed light on the mechanisms of carcinogenesis. Although previous studies reported insightful mutation density patterns associated with certain genomic regions such as transcription start sites and DNA replication origins, a tool that can systematically investigate mutational spatial patterns is still lacking. Thus, we developed MutDens, a bioinformatic tool for comprehensive analysis of mutation density patterns around genomic features, namely, genomic positions, in humans and model species. By scanning the bidirectional vicinity regions of given positions, MutDens systematically characterizes the mutation density for single-base substitution mutational classes after adjusting for total mutation burden and local nucleotide proportion. Analysis results using MutDens not only verified the previously reported transcriptional strand bias around transcription start sites and replicative strand bias around DNA replication origins, but also identified novel mutation density patterns around other genomics features, such as enhancers and retrotransposon insertion polymorphism sites. To our knowledge, MutDens is the first tool that systematically calculates, examines, and compares mutation density patterns, thus providing a valuable avenue for investigating the mutational landscapes associated with important genomic features.
UR - https://www.scopus.com/pages/publications/85141889428
UR - https://www.scopus.com/pages/publications/85141889428#tab=citedBy
U2 - 10.1101/gr.276770.122
DO - 10.1101/gr.276770.122
M3 - Article
C2 - 36100435
AN - SCOPUS:85141889428
SN - 1088-9051
VL - 32
SP - 1930
EP - 1940
JO - Genome Research
JF - Genome Research
IS - 10
ER -