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Yorodumi- PDB-9e05: The consensus model of the cryo-EM structure of human DNMT3A2-DNM... -
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Open data
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Basic information
| Entry | Database: PDB / ID: 900000 | |||||||||||||||||||||
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| Title | The consensus model of the cryo-EM structure of human DNMT3A2-DNMT3B3 complex bound to di-nucleosome | |||||||||||||||||||||
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Keywords | DNA BINDING PROTEIN / DNMT3A2 / DNMT3B3 / DNA methylation / di-nucleosome | |||||||||||||||||||||
| Function / homology | Function and homology informationDNA (cytosine-5-)-methyltransferase activity, acting on CpG substrates / transposable element silencing by piRNA-mediated DNA methylation / protein-cysteine methyltransferase activity / positive regulation of cellular response to hypoxia / DNA-methyltransferase activity / regulatory ncRNA-mediated heterochromatin formation / unmethylated CpG binding / DNA (cytosine-5-)-methyltransferase / DNA (cytosine-5-)-methyltransferase activity / hepatocyte apoptotic process ...DNA (cytosine-5-)-methyltransferase activity, acting on CpG substrates / transposable element silencing by piRNA-mediated DNA methylation / protein-cysteine methyltransferase activity / positive regulation of cellular response to hypoxia / DNA-methyltransferase activity / regulatory ncRNA-mediated heterochromatin formation / unmethylated CpG binding / DNA (cytosine-5-)-methyltransferase / DNA (cytosine-5-)-methyltransferase activity / hepatocyte apoptotic process / response to vitamin A / XY body / SUMOylation of DNA methylation proteins / DNA methylation-dependent constitutive heterochromatin formation / cellular response to ethanol / negative regulation of gene expression via chromosomal CpG island methylation / response to ionizing radiation / ChAHP complex assembly / lncRNA binding / FXIIa activates plasma kallikrein-kinin system / chromosome, centromeric region / Interaction of NuRD complexes with transcription factors / NuRD complex assembly / CHD6, CHD7, CHD8, CHD9 subfamily / catalytic complex / CHD1 and CHD2 subfamily / negative regulation of megakaryocyte differentiation / protein localization to CENP-A containing chromatin / Chromatin modifying enzymes / Replacement of protamines by nucleosomes in the male pronucleus / heterochromatin / Packaging Of Telomere Ends / Recognition and association of DNA glycosylase with site containing an affected purine / Cleavage of the damaged purine / Transferases; Transferring one-carbon groups; Methyltransferases / telomere organization / Interleukin-7 signaling / Deposition of new CENPA-containing nucleosomes at the centromere / Recognition and association of DNA glycosylase with site containing an affected pyrimidine / Cleavage of the damaged pyrimidine / RNA Polymerase I Promoter Opening / Inhibition of DNA recombination at telomere / Assembly of the ORC complex at the origin of replication / SUMOylation of chromatin organization proteins / response to cocaine / Regulation of endogenous retroelements by the Human Silencing Hub (HUSH) complex / Meiotic synapsis / methylation / DNA methylation / Condensation of Prophase Chromosomes / Chromatin modifications during the maternal to zygotic transition (MZT) / HCMV Late Events / SIRT1 negatively regulates rRNA expression / ERCC6 (CSB) and EHMT2 (G9a) positively regulate rRNA expression / PRC2 methylates histones and DNA / Regulation of endogenous retroelements by KRAB-ZFP proteins / Defective pyroptosis / HDACs deacetylate histones / Transcriptional regulation by small RNAs / Regulation of endogenous retroelements by Piwi-interacting RNAs (piRNAs) / RNA Polymerase I Promoter Escape / Nonhomologous End-Joining (NHEJ) / euchromatin / HDMs demethylate histones / Activated PKN1 stimulates transcription of AR (androgen receptor) regulated genes KLK2 and KLK3 / response to toxic substance / RUNX1 regulates genes involved in megakaryocyte differentiation and platelet function / Negative Regulation of CDH1 Gene Transcription / NoRC negatively regulates rRNA expression / PKMTs methylate histone lysines / G2/M DNA damage checkpoint / response to lead ion / Formation of the beta-catenin:TCF transactivating complex / B-WICH complex positively regulates rRNA expression / DNA Damage/Telomere Stress Induced Senescence / Meiotic recombination / Pre-NOTCH Transcription and Translation / Activation of anterior HOX genes in hindbrain development during early embryogenesis / Transcriptional regulation of granulopoiesis / nucleosomal DNA binding / nuclear matrix / RMTs methylate histone arginines / HCMV Early Events / transcription corepressor activity / structural constituent of chromatin / response to estradiol / neuron differentiation / nucleosome / Regulation of PD-L1(CD274) transcription / nucleosome assembly / HATs acetylate histones / Recruitment and ATM-mediated phosphorylation of repair and signaling proteins at DNA double strand breaks / Factors involved in megakaryocyte development and platelet production / MLL4 and MLL3 complexes regulate expression of PPARG target genes in adipogenesis and hepatic steatosis / RUNX1 regulates transcription of genes involved in differentiation of HSCs / chromatin organization / Dengue Virus-Host Interactions / Processing of DNA double-strand break ends / Senescence-Associated Secretory Phenotype (SASP) / heterochromatin formation Similarity search - Function | |||||||||||||||||||||
| Biological species | Homo sapiens (human) | |||||||||||||||||||||
| Method | ELECTRON MICROSCOPY / single particle reconstruction / cryo EM / Resolution: 8 Å | |||||||||||||||||||||
Authors | Xie, X. / Zhou, X.E. / Worden, E.J. / Jones, P.A. | |||||||||||||||||||||
| Funding support | United States, 1items
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Citation | Journal: Mol Cell / Year: 2026Title: Nucleosome spacing regulates linker methylation by DNMT3A2/3B3. Authors: Xiaoyan Xie / Minmin Liu / Gabriella N L Chua / X Edward Zhou / Michelle L Dykstra / Shixin Liu / Peter A Jones / Evan J Worden / ![]() Abstract: De novo CpG methylation (mCpG) is deposited by DNMT3A and DNMT3B, which target DNA linkers between nucleosomes. Cells contain millions of unique linkers, but the rules dictating which linkers get ...De novo CpG methylation (mCpG) is deposited by DNMT3A and DNMT3B, which target DNA linkers between nucleosomes. Cells contain millions of unique linkers, but the rules dictating which linkers get targeted by DNMT3 enzymes are not understood. We show that nucleosome spacing controls linker DNA methylation and H3K36me2 recognition by human DNMT3A2/3B3, linking de novo methylation to chromatin architecture. We present structures of DNMT3A2/3B3 bound to dinucleosomes, revealing that short linkers promote dinucleosome bridging, blocking access to linker DNA and suppressing methylation, whereas long linkers allow DNMT3A2/3B3 to engage each nucleosome separately and methylate linker DNA. Finally, we show that DNMT3A2/3B3 positions proline-tryptophan-tryptophan-proline (PWWP) domains to scan for H3K36me2. However, H3K36me2 recognition is blocked when DNMT3A2/3B3 bridges dinucleosomes with short linkers, imposing an additional structural constraint on DNMT3A2/3B3 function. Together, these findings uncover the mechanisms that govern de novo methylation in chromatin and explain how DNMT3 enzymes target linkers in cells. | |||||||||||||||||||||
| History |
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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 | 9e05.cif.gz | 1.1 MB | Display | PDBx/mmCIF format |
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| PDB format | pdb9e05.ent.gz | 885.2 KB | Display | PDB format |
| PDBx/mmJSON format | 9e05.json.gz | Tree view | PDBx/mmJSON format | |
| Others | Other downloads |
-Validation report
| Arichive directory | https://data.pdbj.org/pub/pdb/validation_reports/e0/9e05 ftp://data.pdbj.org/pub/pdb/validation_reports/e0/9e05 | HTTPS FTP |
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-Related structure data
| Related structure data | ![]() 47349MC ![]() 9e00C ![]() 9e09C ![]() 9e0fC ![]() 9e0gC ![]() 9e0rC ![]() 9e2dC ![]() 9e2fC ![]() 9e2qC ![]() 9e2rC ![]() 9e3dC ![]() 9e3rC ![]() 9e49C ![]() 9q7uC ![]() 9y4pC 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 , 6 types, 24 molecules AEMQBFNRCGOSDHPTVZLXUYWK
| #1: Protein | Mass: 15303.930 Da / Num. of mol.: 4 Source method: isolated from a genetically manipulated source Source: (gene. exp.) Homo sapiens (human)Gene: H3C15, HIST2H3A, H3C14, H3F2, H3FM, HIST2H3C, H3C13, HIST2H3D Production host: ![]() #2: Protein | Mass: 11394.426 Da / Num. of mol.: 4 Source method: isolated from a genetically manipulated source Source: (gene. exp.) Homo sapiens (human)Gene: HIST1H4A, H4/A, H4FA, HIST1H4B, H4/I, H4FI, HIST1H4C, H4/G, H4FG, HIST1H4D, H4/B, H4FB, HIST1H4E, H4/J, H4FJ, HIST1H4F, H4/C, H4FC, HIST1H4H, H4/H, H4FH, HIST1H4I, H4/M, H4FM, HIST1H4J, H4/E, ...Gene: HIST1H4A, H4/A, H4FA, HIST1H4B, H4/I, H4FI, HIST1H4C, H4/G, H4FG, HIST1H4D, H4/B, H4FB, HIST1H4E, H4/J, H4FJ, HIST1H4F, H4/C, H4FC, HIST1H4H, H4/H, H4FH, HIST1H4I, H4/M, H4FM, HIST1H4J, H4/E, H4FE, HIST1H4K, H4/D, H4FD, HIST1H4L, H4/K, H4FK, HIST2H4A, H4/N, H4F2, H4FN, HIST2H4, HIST2H4B, H4/O, H4FO, HIST4H4 Production host: ![]() #3: Protein | Mass: 13978.241 Da / Num. of mol.: 4 Source method: isolated from a genetically manipulated source Source: (gene. exp.) Homo sapiens (human) / Production host: ![]() #4: Protein | Mass: 13655.948 Da / Num. of mol.: 4 Source method: isolated from a genetically manipulated source Source: (gene. exp.) Homo sapiens (human) / Production host: ![]() #7: Protein | Mass: 86702.383 Da / Num. of mol.: 4 Source method: isolated from a genetically manipulated source Source: (gene. exp.) Homo sapiens (human) / Gene: DNMT3B / Production host: Spodoptera (butterflies/moths)References: UniProt: Q9UBC3, DNA (cytosine-5-)-methyltransferase #8: Protein | Mass: 77914.711 Da / Num. of mol.: 4 Source method: isolated from a genetically manipulated source Source: (gene. exp.) Homo sapiens (human) / Gene: DNMT3A / Production host: Spodoptera (butterflies/moths)References: UniProt: Q9Y6K1, DNA (cytosine-5-)-methyltransferase |
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-DNA chain , 2 types, 2 molecules IJ
| #5: DNA chain | Mass: 99578.164 Da / Num. of mol.: 1 / Source method: obtained synthetically / Source: (synth.) Homo sapiens (human) |
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| #6: DNA chain | Mass: 98701.617 Da / Num. of mol.: 1 / Source method: obtained synthetically / Source: (synth.) Homo sapiens (human) |
-Non-polymers , 2 types, 22 molecules 


| #9: Chemical | ChemComp-ZN / #10: Chemical | ChemComp-SAH / |
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-Details
| Has ligand of interest | N |
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| Has protein modification | N |
-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: DNMT3A/3B tetramer bound to di-nucleosome / Type: COMPLEX / Entity ID: #1-#8 / Source: RECOMBINANT |
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| Source (natural) | Organism: Homo sapiens (human) |
| Source (recombinant) | Organism: Spodoptera (butterflies/moths) |
| Buffer solution | pH: 7.8 |
| 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: Talos Arctica / Image courtesy: FEI Company |
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| Microscopy | Model: FEI TALOS ARCTICA |
| Electron gun | Electron source: FIELD EMISSION GUN / Accelerating voltage: 300 kV / Illumination mode: FLOOD BEAM |
| Electron lens | Mode: BRIGHT FIELD / Nominal defocus max: 1500 nm / Nominal defocus min: 1100 nm |
| Image recording | Electron dose: 61 e/Å2 / Film or detector model: GATAN K3 (6k x 4k) |
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Processing
| EM software | Name: PHENIX / Version: 1.13_2998: / Category: model refinement |
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| CTF correction | Type: NONE |
| 3D reconstruction | Resolution: 8 Å / Resolution method: FSC 0.143 CUT-OFF / Num. of particles: 211221 / Symmetry type: POINT |
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About Yorodumi



Homo sapiens (human)
United States, 1items
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Spodoptera (butterflies/moths)
FIELD EMISSION GUN