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Yorodumi- PDB-8hah: Cryo-EM structure of the p300 catalytic core bound to the H4K12ac... -
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Open data
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Basic information
| Entry | Database: PDB / ID: 8hah | ||||||
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| Title | Cryo-EM structure of the p300 catalytic core bound to the H4K12acK16ac nucleosome, class 2 (3.9 angstrom resolution) | ||||||
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Keywords | TRANSFERASE/DNA / Acetyl taransferase / Complex / Nucleosome / TRANSFERASE / TRANSFERASE-DNA complex | ||||||
| Function / homology | Function and homology informationbehavioral defense response / negative regulation of protein oligomerization / peptidyl-lysine propionylation / histone lactyltransferase (CoA-dependent) activity / peptidyl-lysine crotonylation / peptidyl-lysine butyrylation / histone butyryltransferase activity / swimming / histone H3K122 acetyltransferase activity / peptide butyryltransferase activity ...behavioral defense response / negative regulation of protein oligomerization / peptidyl-lysine propionylation / histone lactyltransferase (CoA-dependent) activity / peptidyl-lysine crotonylation / peptidyl-lysine butyrylation / histone butyryltransferase activity / swimming / histone H3K122 acetyltransferase activity / peptide butyryltransferase activity / regulation of tubulin deacetylation / histone H2B acetyltransferase activity / internal protein amino acid acetylation / peptide 2-hydroxyisobutyryltransferase activity / histone crotonyltransferase activity / protein propionyltransferase activity / NOTCH2 intracellular domain regulates transcription / thigmotaxis / L-lysine N-acetyltransferase activity, acting on acetyl phosphate as donor / positive regulation of TORC2 signaling / internal peptidyl-lysine acetylation / histone H4 acetyltransferase activity / cellular response to L-leucine / histone H3 acetyltransferase activity / NFE2L2 regulating ER-stress associated genes / acetylation-dependent protein binding / Activation of the TFAP2 (AP-2) family of transcription factors / NFE2L2 regulating inflammation associated genes / NGF-stimulated transcription / histone H3K18 acetyltransferase activity / N-terminal peptidyl-lysine acetylation / histone H3K27 acetyltransferase activity / LRR FLII-interacting protein 1 (LRRFIP1) activates type I IFN production / NFE2L2 regulates pentose phosphate pathway genes / STAT3 nuclear events downstream of ALK signaling / NFE2L2 regulating MDR associated enzymes / Polo-like kinase mediated events / host-mediated activation of viral transcription / TGFBR3 expression / regulation of androgen receptor signaling pathway / regulation of mitochondrion organization / Regulation of gene expression in late stage (branching morphogenesis) pancreatic bud precursor cells / Regulation of FOXO transcriptional activity by acetylation / RUNX3 regulates NOTCH signaling / NOTCH4 Intracellular Domain Regulates Transcription / Nuclear events mediated by NFE2L2 / Regulation of NFE2L2 gene expression / face morphogenesis / Regulation of gene expression by Hypoxia-inducible Factor / platelet formation / NOTCH3 Intracellular Domain Regulates Transcription / regulation of glycolytic process / TRAF6 mediated IRF7 activation / NFE2L2 regulating tumorigenic genes / NFE2L2 regulating anti-oxidant/detoxification enzymes / megakaryocyte development / protein-lysine-acetyltransferase activity / acyltransferase activity / nuclear androgen receptor binding / protein acetylation / STAT family protein binding / Formation of paraxial mesoderm / positive regulation of transforming growth factor beta receptor signaling pathway / acetyltransferase activity / FOXO-mediated transcription of cell death genes / fat cell differentiation / stimulatory C-type lectin receptor signaling pathway / RUNX1 interacts with co-factors whose precise effect on RUNX1 targets is not known / Zygotic genome activation (ZGA) / PI5P Regulates TP53 Acetylation / histone acetyltransferase complex / RUNX3 regulates p14-ARF / intrinsic apoptotic signaling pathway in response to DNA damage by p53 class mediator / canonical NF-kappaB signal transduction / negative regulation of tumor necrosis factor-mediated signaling pathway / negative regulation of gluconeogenesis / NF-kappaB binding / pre-mRNA intronic binding / somitogenesis / Attenuation phase / positive regulation of T-helper 17 cell lineage commitment / negative regulation of protein-containing complex assembly / positive regulation of DNA-binding transcription factor activity / histone acetyltransferase activity / cellular response to nutrient levels / skeletal muscle tissue development / histone acetyltransferase / protein localization to CENP-A containing chromatin / regulation of cellular response to heat / NR1H3 & NR1H2 regulate gene expression linked to cholesterol transport and efflux / Chromatin modifying enzymes / Replacement of protamines by nucleosomes in the male pronucleus / SARS-CoV-1 targets host intracellular signalling and regulatory pathways / CENP-A containing nucleosome / Regulation of TP53 Activity through Acetylation / Packaging Of Telomere Ends / : / Recognition and association of DNA glycosylase with site containing an affected purine / Cleavage of the damaged purine / Transferases; Acyltransferases; Transferring groups other than aminoacyl groups Similarity search - Function | ||||||
| Biological species | Homo sapiens (human) | ||||||
| Method | ELECTRON MICROSCOPY / single particle reconstruction / cryo EM / Resolution: 3.9 Å | ||||||
Authors | Kikuchi, M. / Morita, S. / Wakamori, M. / Shin, S. / Uchikubo-Kamo, T. / Shirouzu, M. / Umehara, T. | ||||||
| Funding support | Japan, 1items
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Citation | Journal: Nat Commun / Year: 2023Title: Epigenetic mechanisms to propagate histone acetylation by p300/CBP. Authors: Masaki Kikuchi / Satoshi Morita / Masatoshi Wakamori / Shin Sato / Tomomi Uchikubo-Kamo / Takehiro Suzuki / Naoshi Dohmae / Mikako Shirouzu / Takashi Umehara / ![]() Abstract: Histone acetylation is important for the activation of gene transcription but little is known about its direct read/write mechanisms. Here, we report cryogenic electron microscopy structures in which ...Histone acetylation is important for the activation of gene transcription but little is known about its direct read/write mechanisms. Here, we report cryogenic electron microscopy structures in which a p300/CREB-binding protein (CBP) multidomain monomer recognizes histone H4 N-terminal tail (NT) acetylation (ac) in a nucleosome and acetylates non-H4 histone NTs within the same nucleosome. p300/CBP not only recognized H4NTac via the bromodomain pocket responsible for reading, but also interacted with the DNA minor grooves via the outside of that pocket. This directed the catalytic center of p300/CBP to one of the non-H4 histone NTs. The primary target that p300 writes by reading H4NTac was H2BNT, and H2BNTac promoted H2A-H2B dissociation from the nucleosome. We propose a model in which p300/CBP replicates histone N-terminal tail acetylation within the H3-H4 tetramer to inherit epigenetic storage, and transcribes it from the H3-H4 tetramer to the H2B-H2A dimers to activate context-dependent gene transcription through local nucleosome destabilization. | ||||||
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Structure visualization
| Structure viewer | Molecule: Molmil Jmol/JSmol |
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Downloads & links
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Download
| PDBx/mmCIF format | 8hah.cif.gz | 412.8 KB | Display | PDBx/mmCIF format |
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| PDB format | pdb8hah.ent.gz | 307.3 KB | Display | PDB format |
| PDBx/mmJSON format | 8hah.json.gz | Tree view | PDBx/mmJSON format | |
| Others | Other downloads |
-Validation report
| Summary document | 8hah_validation.pdf.gz | 1.2 MB | Display | wwPDB validaton report |
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| Full document | 8hah_full_validation.pdf.gz | 1.3 MB | Display | |
| Data in XML | 8hah_validation.xml.gz | 55.7 KB | Display | |
| Data in CIF | 8hah_validation.cif.gz | 87.1 KB | Display | |
| Arichive directory | https://data.pdbj.org/pub/pdb/validation_reports/ha/8hah ftp://data.pdbj.org/pub/pdb/validation_reports/ha/8hah | HTTPS FTP |
-Related structure data
| Related structure data | ![]() 34589MC ![]() 8hagC ![]() 8haiC ![]() 8hajC ![]() 8hakC ![]() 8halC ![]() 8hamC ![]() 8hanC M: map data used to model this data C: citing same article ( |
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| Similar structure data | Similarity search - Function & homology F&H Search |
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Links
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Assembly
| Deposited unit | ![]()
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Components
-Protein , 5 types, 9 molecules AEBFCGDHK
| #1: Protein | Mass: 15305.969 Da / Num. of mol.: 2 Source method: isolated from a genetically manipulated source Source: (gene. exp.) Homo sapiens (human)Gene: H3C1, H3FA, HIST1H3A, H3C2, H3FL, HIST1H3B, H3C3, H3FC HIST1H3C, H3C4, H3FB, HIST1H3D, H3C6, H3FD, HIST1H3E, H3C7, H3FI, HIST1H3F, H3C8, H3FH, HIST1H3G, H3C10, H3FK, HIST1H3H, H3C11, H3FF, ...Gene: H3C1, H3FA, HIST1H3A, H3C2, H3FL, HIST1H3B, H3C3, H3FC HIST1H3C, H3C4, H3FB, HIST1H3D, H3C6, H3FD, HIST1H3E, H3C7, H3FI, HIST1H3F, H3C8, H3FH, HIST1H3G, H3C10, H3FK, HIST1H3H, H3C11, H3FF, HIST1H3I, H3C12, H3FJ, HIST1H3J Production host: ![]() #2: Protein | Mass: 11345.289 Da / Num. of mol.: 2 Source method: isolated from a genetically manipulated source Source: (gene. exp.) Homo sapiens (human) / Production host: ![]() #3: Protein | Mass: 14034.355 Da / Num. of mol.: 2 Source method: isolated from a genetically manipulated source Source: (gene. exp.) Homo sapiens (human) / Gene: H2AC4, H2AFM, HIST1H2AB, H2AC8, H2AFA, HIST1H2AE / Production host: ![]() #4: Protein | Mass: 13804.045 Da / Num. of mol.: 2 Source method: isolated from a genetically manipulated source Source: (gene. exp.) Homo sapiens (human) / Gene: H2BC11, H2BFR, HIST1H2BJ / Production host: ![]() #6: Protein | | Mass: 92314.391 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) Homo sapiens (human) / Gene: EP300, P300 / Production host: Trichoplusia ni (cabbage looper)References: UniProt: Q09472, histone acetyltransferase, Transferases; Acyltransferases; Transferring groups other than aminoacyl groups |
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-DNA chain , 1 types, 2 molecules IJ
| #5: DNA chain | Mass: 55560.527 Da / Num. of mol.: 2 Source method: isolated from a genetically manipulated source Source: (gene. exp.) Homo sapiens (human) / Production host: ![]() |
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-Details
| Has protein modification | N |
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-Experimental details
-Experiment
| Experiment | Method: ELECTRON MICROSCOPY |
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| EM experiment | Aggregation state: PARTICLE / 3D reconstruction method: single particle reconstruction |
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Sample preparation
| Component | Name: the p300 catalytic core bound to the H4K12acK16ac nucleosome Type: COMPLEX / Details: p300 was expressed in insect cells. / Entity ID: all / Source: RECOMBINANT |
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| Source (natural) | Organism: Homo sapiens (human) |
| Source (recombinant) | Organism: ![]() |
| Buffer solution | pH: 7.2 |
| Specimen | Embedding applied: NO / Shadowing applied: NO / Staining applied: NO / Vitrification applied: YES |
| Vitrification | Cryogen name: ETHANE |
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Electron microscopy imaging
| Experimental equipment | ![]() Model: Titan Krios / Image courtesy: FEI Company |
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| Microscopy | Model: TFS KRIOS |
| Electron gun | Electron source: FIELD EMISSION GUN / Accelerating voltage: 300 kV / Illumination mode: FLOOD BEAM |
| Electron lens | Mode: BRIGHT FIELD / Nominal defocus max: 2000 nm / Nominal defocus min: 800 nm |
| Image recording | Electron dose: 50 e/Å2 / Film or detector model: GATAN K3 BIOQUANTUM (6k x 4k) |
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Processing
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| CTF correction | Type: PHASE FLIPPING AND AMPLITUDE CORRECTION | ||||||||||||||||||||||||
| 3D reconstruction | Resolution: 3.9 Å / Resolution method: FSC 0.143 CUT-OFF / Num. of particles: 74692 / Symmetry type: POINT | ||||||||||||||||||||||||
| Refinement | Cross valid method: NONE Stereochemistry target values: GeoStd + Monomer Library + CDL v1.2 | ||||||||||||||||||||||||
| Displacement parameters | Biso mean: 337.07 Å2 | ||||||||||||||||||||||||
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About Yorodumi



Homo sapiens (human)
Japan, 1items
Citation
















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Trichoplusia ni (cabbage looper)
FIELD EMISSION GUN