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Reference - PMID:31848341 - Structural basis of nucleosome assembly by the Abo1 AAA+ ATPase histone chaperone.

Reference summary

PubMed ID
PMID:31848341
Title
Structural basis of nucleosome assembly by the Abo1 AAA+ ATPase histone chaperone.
Authors
Cho C, Jang J, Kang Y, Watanabe H, Uchihashi T, Kim SJ, Kato K, Lee JY, Song JJ
Citation
Nat Commun 2019 Dec 17;10(1):5764
Publication year
2019
Abstract
The fundamental unit of chromatin, the nucleosome, is an intricate structure that requires histone chaperones for assembly. ATAD2 AAA+ ATPases are a family of histone chaperones that regulate nucleosome density and chromatin dynamics. Here, we demonstrate that the fission yeast ATAD2 homolog, Abo1, deposits histone H3-H4 onto DNA in an ATP-hydrolysis-dependent manner by in vitro reconstitution and single-tethered DNA curtain assays. We present cryo-EM structures of an ATAD2 family ATPase to atomic resolution in three different nucleotide states, revealing unique structural features required for histone loading on DNA, and directly visualize the transitions of Abo1 from an asymmetric spiral (ATP-state) to a symmetric ring (ADP- and apo-states) using high-speed atomic force microscopy (HS-AFM). Furthermore, we find that the acidic pore of ATP-Abo1 binds a peptide substrate which is suggestive of a histone tail. Based on these results, we propose a model whereby Abo1 facilitates H3-H4 loading by utilizing ATP.

Annotation

GO biological process

GO:0006335 - DNA replication-dependent chromatin assembly

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GO molecular function

GO:0016887 - ATP hydrolysis activity

Genes:

GO:0140665 - ATP-dependent H3-H4 histone complex chaperone activity

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Single locus phenotype

FYPO:0003674 - abolished ATPase activity

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Genotypes:

FYPO:0007805 - abolished H3-H4 dimer loading onto DNA

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Genotypes: