Williams- Beuren Syndrome

WSTF regulates the H2A.X DNA damage response via a novel tyrosine kinase activity

DNA damage / Transcription Factors / Multidisciplinary / Nature / Humans / Mice / Animals / Cell Death / Chromatin remodeling / Phosphorylation / Williams- Beuren Syndrome / Nucleosomes / Transcription Factor / Phosphotyrosine / Histones / DNA damage response / Genomic instability / Tyrosine Kinase / Mice / Animals / Cell Death / Chromatin remodeling / Phosphorylation / Williams- Beuren Syndrome / Nucleosomes / Transcription Factor / Phosphotyrosine / Histones / DNA damage response / Genomic instability / Tyrosine Kinase

WSTF regulates the H2A.X DNA damage response via a novel tyrosine kinase activity

DNA damage / Transcription Factors / Multidisciplinary / Nature / Humans / Mice / Animals / Cell Death / Chromatin remodeling / Phosphorylation / Williams- Beuren Syndrome / Nucleosomes / Transcription Factor / Phosphotyrosine / Histones / DNA damage response / Genomic instability / Tyrosine Kinase / DNA double strand breaks / Mice / Animals / Cell Death / Chromatin remodeling / Phosphorylation / Williams- Beuren Syndrome / Nucleosomes / Transcription Factor / Phosphotyrosine / Histones / DNA damage response / Genomic instability / Tyrosine Kinase / DNA double strand breaks
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