9LNU image
Deposition Date 2025-01-22
Release Date 2026-01-28
Last Version Date 2026-04-01
Entry Detail
PDB ID:
9LNU
Keywords:
Title:
Structure of MBP tagged H2A.W-H2B
Biological Source:
Source Organism(s):
Expression System(s):
Method Details:
Experimental Method:
Resolution:
1.85 Å
R-Value Free:
0.22
R-Value Work:
0.20
R-Value Observed:
0.20
Space Group:
P 41 21 2
Macromolecular Entities
Structural Superimposition Protein Blast
Polymer Type:polypeptide(L)
Molecule:Structure of MBP tagged H2A.W
Chain IDs:A
Chain Length:599
Number of Molecules:1
Biological Source:Arabidopsis thaliana
Ligand Molecules
Primary Citation
Crystal structure of the histone heterodimer containing histone variant H2A.W.
Biochem Biophys Rep 46 102535 102535 (2026)
PMID: 41847302 DOI: 10.1016/j.bbrep.2026.102535

Abstact

Histone variant H2A.W plays a critical role in heterochromatin organization and genome stability, the loss of H2A.W can lead to heterochromatin decondensation, resulting in growth defects in flowering plants. Yet the mechanism underlying how H2A.W integrates into chromatin remains elusive. Here, we present the first high-resolution crystal structure of the Arabidopsis thaliana H2A.W (AtH2A.W) - Homo sapiens H2B (HsH2B) in the DNA-free heterodimeric state. In the structure, the global domain of DNA-free AtH2A.W-HsH2B share almost the same structure with its DNA bound form in the nucleosome, except the alphaC helix and the following C-terminal tail region (docking domain). What's more, we find that the AtH2A.W docking domain binds to the alpha2-alpha3 region of HsH2B, which is different from its role of interact with H3-H4 and DNA in nucleosome. These structure analyses suggest that the alphaC and docking domain of AtH2A.W is highly dynamic and may be remodeled during nucleosome assembly. In summary, our findings highlight the dynamic nature of AtH2A.W docking domain, providing mechanistic insight into how AtH2A.W integrates into chromatin and supports specialized chromatin functions.

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Primary Citation of related structures
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