Modeling methyl-sensitive transcription factor motifs with an

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Last updated 16 junho 2024
Modeling methyl-sensitive transcription factor motifs with an
Europe PMC is an archive of life sciences journal literature.
Modeling methyl-sensitive transcription factor motifs with an
In need of good neighbours: transcription factors require local DNA hypomethylation for target binding
Modeling methyl-sensitive transcription factor motifs with an
Impact of cytosine methylation on DNA binding specificities of human transcription factors
Modeling methyl-sensitive transcription factor motifs with an
Modeling methyl-sensitive transcription factor motifs with an expanded epigenetic alphabet
Modeling methyl-sensitive transcription factor motifs with an
Impact of cytosine methylation on DNA binding specificities of human transcription factors
Modeling methyl-sensitive transcription factor motifs with an
DNA methylation patterns of transcription factor binding regions characterize their functional and evolutionary contexts
Modeling methyl-sensitive transcription factor motifs with an
Cells, Free Full-Text
Modeling methyl-sensitive transcription factor motifs with an
Biomedicines, Free Full-Text
Modeling methyl-sensitive transcription factor motifs with an
Toward a base-resolution panorama of the in vivo impact of cytosine methylation on transcription factor binding, Genome Biology
Modeling methyl-sensitive transcription factor motifs with an
Sensitivity of transcription factors to DNA methylation. - Abstract - Europe PMC
Modeling methyl-sensitive transcription factor motifs with an
Evidence that direct inhibition of transcription factor binding is the prevailing mode of gene and repeat repression by DNA methylation
Modeling methyl-sensitive transcription factor motifs with an
Toward a base-resolution panorama of the in vivo impact of cytosine methylation on transcription factor binding, Genome Biology
Modeling methyl-sensitive transcription factor motifs with an
Sequence-Specific Structural Features and Solvation Properties of Transcription Factor Binding DNA Motifs: Insights from Molecular Dynamics Simulation

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