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Histone octamer rearranges to adapt to DNA unwrapping
- Source :
- Nature structural & molecular biology
- Publication Year :
- 2017
-
Abstract
- Nucleosomes, the basic units of chromatin, package and regulate expression of eukaryotic genomes. Although the structure of the intact nucleosome is well characterized, little is known about structures of partially unwrapped, transient intermediates. In this study, we present nine cryo-EM structures of distinct conformations of nucleosome and subnucleosome particles. These structures show that initial DNA breathing induces conformational changes in the histone octamer, particularly in histone H3, that propagate through the nucleosome and prevent symmetrical DNA opening. Rearrangements in the H2A-H2B dimer strengthen interaction with the unwrapping DNA and promote nucleosome stability. In agreement with this, cross-linked H2A-H2B that cannot accommodate unwrapping of the DNA is not stably maintained in the nucleosome. H2A-H2B release and DNA unwrapping occur simultaneously, indicating that DNA is essential in stabilizing the dimer in the nucleosome. Our structures reveal intrinsic nucleosomal plasticity that is required for nucleosome stability and might be exploited by extrinsic protein factors.
- Subjects :
- 0301 basic medicine
Protein Conformation
cryo EM
RNA polymerase II
Xenopus Proteins
Article
DNA unwrapping
Histones
03 medical and health sciences
Histone H3
chemistry.chemical_compound
Xenopus laevis
Protein structure
Structural Biology
Transcription (biology)
nucleosome breathing
Nucleosome
Animals
Histone octamer
Molecular Biology
Nucleosome Assembly Protein 1
biology
Chemistry
nucleosome
Cryoelectron Microscopy
DNA
Chromatin
Nucleosomes
hexasome
030104 developmental biology
biology.protein
Biophysics
Protein Multimerization
transcription
Molecular Chaperones
Subjects
Details
- Language :
- English
- ISSN :
- 15459985 and 15459993
- Volume :
- 25
- Issue :
- 1
- Database :
- OpenAIRE
- Journal :
- Nature structural & molecular biology
- Accession number :
- edsair.doi.dedup.....37ed77e75f038950b8f955d386858c1f