Co-transcriptional histone acetylation is a consequence of histone exchange
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Histone Exchange is Associated with Activator Function at Transcribed Promoters and with Repression at Histone Loci. Histone Exchange is Associated with Activator Function at Transcribed Promoters and with Repression at Histone Loci
Transcription in eukaryotes correlates with major chromatin changes, including the replacement of old nucleosomal histones by new histones at the promoters of genes. The role of these histone exchange
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Recognition of inherently unstable H2A-nucleosome by Swc2 is a major determinant for unidirectional H2A.Z exchange
The site-specific chromatin incorporation of eukaryotic histone variant H2A.Z is driven by the multi-component chromatin remodeling complex SWR1/SRCAP/ p400. The budding yeast SWR1 complex replaces th
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RSF Governs Silent Chromatin Formation via Histone H2Av Replacement
Human remodeling and spacing factor (RSF) consists of a heterodimer of Rsf-1 and hSNF2H, a counterpart of Drosophila ISWI. RSF possesses not only chromatin remodeling activity but also chromatin assem
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Stepwise histone replacement by SWR1 requires dual activation with histone H2A.Z and canonical nucleosome. Saccharomyces cerevisiae
Histone variant H2A.Z-containing nucleosomes are incorporated at most eukaryotic promoters. This incorporation is mediated by the conserved SWR1 complex, which replaces histone H2A in canonical nucleo
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Structural insights into histone exchange by human SRCAP complex. Structural insights into histone exchange by human SRCAP complex
Histone variant H2A.Z is found at promoters and regulates transcription. The ATP-dependent chromatin remodeler SRCAP complex (SRCAP-C) promotes the replacement of canonical histone H2A-H2B dimer with
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