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Evolutionary conservation of histone modifications in mammals
Yong H. Woo, Wen Hsiung Li
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Corresponding author for this work
Research output
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Contribution to journal
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Article
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peer-review
41
Scopus citations
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Biochemistry, Genetics and Molecular Biology
Acetylation
10%
Binding Site
40%
CTCF
10%
Epigenetics
10%
Eukaryote
10%
GC-content
10%
Gene Control
10%
Genetic Conservation
100%
Histone
20%
Histone Modification
100%
Housekeeping Gene
10%
Human
20%
Intergenic Region
10%
Lysine
30%
Methylation
20%
Mouse
20%
Promoter Region
10%
Transcription Factor
40%
Medicine and Dentistry
Acetylation
10%
Binding Site
40%
Epigenomics
10%
Gene Control
10%
Genetic Conservation
100%
Histone
20%
Histone Modification
100%
Housekeeping Gene
10%
Lysine
30%
Methylation
20%
Promoter Region
10%
Spacer DNA
10%
Transcription Factor
40%
Immunology and Microbiology
Acetylation
10%
Binding Site
40%
Epigenetics
10%
Eukaryote
10%
Gene Control
10%
Genetic Conservation
100%
Histone Modification
100%
Housekeeping Gene
10%
Human
20%
Methylation
20%
Mouse
20%
Promoter Region
10%
Transcription Factor
40%
Keyphrases
H3K27ac
10%
Human Modification
10%
Site Conservation
10%
Slow Evolution
10%