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9OGZ

Cryo-EM analysis of human H2A.Z on Sat2R-P DNA (v2)

Summary for 9OGZ
Entry DOI10.2210/pdb9ogz/pdb
EMDB information70474
DescriptorHistone H3.2, Histone H4, Histone H2A.Z, ... (5 entities in total)
Functional Keywordsnucleosome, h2a.z, dna methylation, dna binding protein
Biological sourceHomo sapiens (human)
More
Total number of polymer chains10
Total formula weight202214.85
Authors
Shih, R.M.,Arimura, Y. (deposition date: 2025-05-02, release date: 2025-11-05, Last modification date: 2026-07-22)
Primary citationShih, R.M.,Arimura, Y.,Konishi, H.A.,Funabiki, H.
Impacts of DNA methylation on H2A.Z deposition and nucleosome stability.
Elife, 15:-, 2026
Cited by
PubMed Abstract: The histone variant H2A.Z and DNA methylation are enriched at mutually exclusive genomic segments, though its mechanistic bases remain unclear. Here, we examine DNA methylation's influence on the intrinsic stability of the H2A.Z nucleosome and chaperone-mediated H2A.Z deposition. Cryo-EM and endonuclease analyses suggest that DNA methylation subtly increases the openness and accessibility of the H2A.Z nucleosome on satellite II-derived DNA sequences. In transcriptionally silent egg extracts, H2A.Z preferentially associates with unmethylated DNA though a substantial proportion of H2A.Z is recruited to methylated DNA. Preferential H2A.Z deposition to unmethylated DNA depends on the SRCAP complex, whose DNA binding is suppressed by methylation, while an SRCAP-independent and DNA methylation-insensitive mechanism for H2A.Z deposition also exists. Altogether, we propose that SRCAP drives the biased association of H2A.Z to unmethylated DNA, while additional mechanisms, potentially taking advantage of the subtle DNA methylation-induced physical effects, further assist the exclusion of H2A.Z from methylated DNA.
PubMed: 42411467
DOI: 10.7554/eLife.109762
PDB entries with the same primary citation
Experimental method
ELECTRON MICROSCOPY (3.05 Å)
Structure validation

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