Short DNA sequence patterns accurately identify broadly active human enhancers

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Short DNA sequence patterns accurately identify broadly active human enhancers is …
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scholarly articleQ13442814

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P6179Dimensions Publication ID1090745510
P356DOI10.1186/S12864-017-3934-9
P932PMC publication ID5512948
P698PubMed publication ID28716036

P2093author name stringLing Chen
John A Capra
Laura L Colbran
P2860cites workDNA methylation patterns and epigenetic memoryQ22065780
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P433issue1
P407language of work or nameEnglishQ1860
P304page(s)536
P577publication date2017-07-17
P1433published inBMC GenomicsQ15765854
P1476titleShort DNA sequence patterns accurately identify broadly active human enhancers
P478volume18

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cites work (P2860)
Q91973465Computational Biology Solutions to Identify Enhancers-target Gene Pairs
Q89000028Human Enhancers Harboring Specific Sequence Composition, Activity, and Genome Organization Are Linked to the Immune Response
Q92956079Next generation pathways into biomedical informatics: lessons from 10 years of the Vanderbilt Biomedical Informatics Summer Internship Program
Q90715098TELS: A Novel Computational Framework for Identifying Motif Signatures of Transcribed Enhancers
Q91895462The bread wheat epigenomic map reveals distinct chromatin architectural and evolutionary features of functional genetic elements
Q62489011Visual Analytics of Genomic and Cancer Data: A Systematic Review

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