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4QBM

Crystal structure of human BAZ2A bromodomain in complex with a diacetylated histone 4 peptide (H4K16acK20ac)

Summary for 4QBM
Entry DOI10.2210/pdb4qbm/pdb
Related4QC1 4QC3
DescriptorBromodomain adjacent to zinc finger domain protein 2A, histone H4 peptide with sequence Gly-Ala-Lys(ac)-Arg-His-Arg-Lys(ac)-Val-Leu, 1,2-ETHANEDIOL, ... (4 entities in total)
Functional Keywordsbromodomain adjacent to zinc finger domain protein 2a, transcription termination factor i-interacting protein 5, tip5, bromodomain, structural genomics consortium, sgc, transcription
Biological sourceHomo sapiens (human)
Cellular locationNucleus, nucleolus : Q9UIF9
Total number of polymer chains4
Total formula weight27382.93
Authors
Primary citationTallant, C.,Valentini, E.,Fedorov, O.,Overvoorde, L.,Ferguson, F.M.,Filippakopoulos, P.,Svergun, D.I.,Knapp, S.,Ciulli, A.
Molecular basis of histone tail recognition by human TIP5 PHD finger and bromodomain of the chromatin remodeling complex NoRC.
Structure, 23:80-92, 2015
Cited by
PubMed Abstract: Binding of the chromatin remodeling complex NoRC to RNA complementary to the rDNA promoter mediates transcriptional repression. TIP5, the largest subunit of NoRC, is involved in recruitment to rDNA by interactions with promoter-bound TTF-I, pRNA, and acetylation of H4K16. TIP5 domains that recognize posttranslational modifications on histones are essential for recruitment of NoRC to chromatin, but how these reader modules recognize site-specific histone tails has remained elusive. Here, we report crystal structures of PHD zinc finger and bromodomains from human TIP5 and BAZ2B in free form and bound to H3 and/or H4 histones. PHD finger functions as an independent structural module in recognizing unmodified H3 histone tails, and the bromodomain prefers H3 and H4 acetylation marks followed by a key basic residue, KacXXR. Further low-resolution analyses of PHD-bromodomain modules provide molecular insights into their trans histone tail recognition, required for nucleosome recruitment and transcriptional repression of the NoRC complex.
PubMed: 25533489
DOI: 10.1016/j.str.2014.10.017
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (1.65 Å)
Structure validation

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数据于2024-11-06公开中

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