Category:Epigenetics
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Category Epigenetics on sister projects: | ||||||||||||||||||||||||
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Wikipedia en:
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Subcategories
This category has the following 10 subcategories, out of 10 total.
D
- DNA methylation (64 F)
E
- Epigenetic therapy (2 F)
M
S
- Epigenetics of schizophrenia (10 F)
- Somaclonal variation (1 F)
T
- TET enzymes (20 F)
V
- Vitrovariation (1 F)
Media in category "Epigenetics"
The following 126 files are in this category, out of 126 total.
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13059 2015 737 Fig1 HTML.gif 719 × 992; 87 KB
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Aging Cell - 2024 - Koncevičius - Epigenetic age oscillates during the day.pdf 1,239 × 1,629, 8 pages; 2.34 MB
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Agouti Mice.jpg 1,200 × 941; 601 KB
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Beck–Fahrner syndrome or TET3 deficiency (episignature).jpg 1,796 × 1,841; 422 KB
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Beck–Fahrner syndrome or TET3 deficiency episignature.png 2,052 × 1,755; 846 KB
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Brian in a workshop.png 791 × 545; 840 KB
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Cancer genetics-epigenetics yin-yang.jpg 1,800 × 1,790; 163 KB
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Chemical structures of TET-oxidized products.jpg 839 × 590; 129 KB
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Comparison typical enhancer and super enhancer.jpg 2,550 × 3,300; 1.67 MB
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Craniofacial features in Beck–Fahrner syndrome.png 1,221 × 1,638; 2.62 MB
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CRISPR Sterics.svg 1,140 × 1,105; 155 KB
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Crosstalk between metabolic and epigenetic regulation.jpg 2,693 × 1,277; 251 KB
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Cytosine and 5-methylcytosine.jpg 1,524 × 954; 91 KB
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Cytosine and 5-methylcytosine.svg 610 × 373; 21 KB
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Dam Methylase.png 1,700 × 999; 466 KB
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Demethylation of 5-methylcytosine.jpg 2,550 × 3,300; 1.36 MB
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Demethylation of 5-methylcytosine.svg 816 × 1,056; 127 KB
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Deregulation LAD.jpg 1,038 × 1,042; 113 KB
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Diagram Damage to Cancer Wiki 300dpi Workaround.svg 512 × 675; 314 KB
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Diagram Damage to Cancer Wiki 300dpi(hy).png 683 × 900; 84 KB
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Diagram Damage to Cancer Wiki 300dpi.svg 512 × 675; 4 KB
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Differential-epigenetic-reprogramming-in-response-to-specific-endocrine-therapies-promotes-ncomms10044-s2.ogv 20 s, 1,344 × 1,024; 15.49 MB
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Differential-epigenetic-reprogramming-in-response-to-specific-endocrine-therapies-promotes-ncomms10044-s3.ogv 20 s, 1,344 × 1,024; 12.31 MB
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Differential-epigenetic-reprogramming-in-response-to-specific-endocrine-therapies-promotes-ncomms10044-s4.ogv 20 s, 1,344 × 1,024; 10.26 MB
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Differential-epigenetic-reprogramming-in-response-to-specific-endocrine-therapies-promotes-ncomms10044-s5.ogv 19 s, 1,344 × 1,024; 18.75 MB
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Differential-epigenetic-reprogramming-in-response-to-specific-endocrine-therapies-promotes-ncomms10044-s6.ogv 13 s, 1,344 × 1,024; 10.5 MB
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Differential-epigenetic-reprogramming-in-response-to-specific-endocrine-therapies-promotes-ncomms10044-s8.ogv 13 s, 1,344 × 1,024; 10.57 MB
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Differential-epigenetic-reprogramming-in-response-to-specific-endocrine-therapies-promotes-ncomms10044-s9.ogv 13 s, 1,344 × 1,024; 8.86 MB
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DNA damage, repair, alteration of repair in cancer.jpg 2,550 × 3,300; 2 MB
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DNA damage, repair, epigenetic alteration of repair in cancer.jpg 2,404 × 2,628; 709 KB
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DNA methylation (corrected).png 858 × 761; 37 KB
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DNA methylation.jpg 6,400 × 4,800; 1.11 MB
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Dosage compensation-ru.jpg 2,291 × 1,691; 2.04 MB
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Dosage compensation.jpg 2,291 × 1,691; 661 KB
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EffectorWiki.pdf 6,900 × 6,366; 393 KB
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Epigen.png 800 × 515; 121 KB
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EpigenByYear 1.png 3,705 × 2,272; 439 KB
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Epigenetic alterations in tumour progression.svg 387 × 145; 347 KB
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Epigenetic Inheritance Through The Female Line.png 504 × 400; 149 KB
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Epigenetic Landscape - Waddington's Adaptation.png 944 × 1,028; 468 KB
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Epigenetic priming in Cancer.png 4,096 × 1,443; 989 KB
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Epigenetic priming model.png 4,096 × 4,096; 1.75 MB
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Epigenetic-Regulation-of-Histone-H3-Serine-10-Phosphorylation-Status-by-HCF-1-Proteins-in-C.-pone.0001213.s003.ogv 1 min 3 s, 348 × 319; 4.96 MB
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Epigenetic-Regulation-of-Histone-H3-Serine-10-Phosphorylation-Status-by-HCF-1-Proteins-in-C.-pone.0001213.s004.ogv 1 min 3 s, 412 × 418; 5.95 MB
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Epigenetic-Regulation-of-Histone-H3-Serine-10-Phosphorylation-Status-by-HCF-1-Proteins-in-C.-pone.0001213.s005.ogv 1 min 38 s, 344 × 206; 8.25 MB
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Epigenetics modifications.png 574 × 324; 112 KB
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Epigenetik Mekanizmalar.jpg 1,068 × 800; 468 KB
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Epigenetische Mechanismen.png 2,187 × 1,488; 2.04 MB
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Epigenome-transparent-upscale.png 1,203 × 1,060; 562 KB
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Epigenome.png 397 × 325; 72 KB
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Epigentics 1.png 200 × 200; 5 KB
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Epiphenotyping workflow1.png 2,300 × 1,170; 272 KB
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Epiphenotyping.png 1,836 × 1,070; 221 KB
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Examples of epiphenotyping applications.jpg 960 × 540; 75 KB
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Fam40b-is-required-for-lineage-commitment-of-murine-embryonic-stem-cells-cddis2014273x4.ogv 21 s, 1,024 × 768; 677 KB
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Fam40b-is-required-for-lineage-commitment-of-murine-embryonic-stem-cells-cddis2014273x5.ogv 20 s, 1,024 × 768; 344 KB
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Gene regulation by TET proteins.png 1,438 × 935; 491 KB
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Genetic-epigenesis-pbio.1001325.s014.ogv 3.0 s, 1,548 × 616; 254 KB
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Genetic-epigenesis-pbio.1001325.s015.ogv 3.0 s, 608 × 302; 48 KB
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Genetic-epigenesis-pbio.1001325.s016.ogv 4.0 s, 400 × 540; 69 KB
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Genetic-epigenesis-pbio.1001325.s017.ogv 7.3 s, 1,302 × 626; 187 KB
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Genetic-epigenesis-pbio.1001325.s018.ogv 7.3 s, 1,302 × 526; 143 KB
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Genomic imprinting.svg 964 × 885; 552 KB
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HDACs' role.jpg 1,084 × 874; 82 KB
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Heritable-Stochastic-Switching-Revealed-by-Single-Cell-Genealogy-pbio.0050239.sv001.ogv 15 s, 738 × 700; 526 KB
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Heterochromatin-Formation-Promotes-Longevity-and-Represses-Ribosomal-RNA-Synthesis-pgen.1002473.s005.ogv 1 min 14 s, 352 × 288; 1.67 MB
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Heterochromatin-Formation-Promotes-Longevity-and-Represses-Ribosomal-RNA-Synthesis-pgen.1002473.s006.ogv 1 min 10 s, 352 × 288; 1.7 MB
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Heterochromatin-Formation-Promotes-Longevity-and-Represses-Ribosomal-RNA-Synthesis-pgen.1002473.s007.ogv 1 min 11 s, 352 × 288; 1.51 MB
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Histone acetylation in regulating glial response after CNS injury.jpg 1,026 × 782; 580 KB
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Igf2 imprinting.svg 528 × 340; 60 KB
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Ijms-20-03123-g001-550.webp 550 × 455; 35 KB
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Inactivacio-cromosoma-x.svg 900 × 700; 61 KB
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Initiation of DNA demethylation at a CpG site.svg 643 × 739; 38 KB
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Intergenerational inheritance.png 479 × 338; 24 KB
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Isoformes del DNMT3B.jpg 960 × 540; 57 KB
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KDM5B.jpg 769 × 479; 133 KB
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Kit paramutation.tif 1,994 × 3,699; 1.61 MB
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Mechanismen epigenetischer Genregulation.webp 2,055 × 1,254; 114 KB
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Methylation levels during mouse early embryonic development.jpg 816 × 1,056; 59 KB
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Methylation levels during mouse very early embryonic development.jpg 651 × 315; 37 KB
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Model działania lunazyny na epigenom.png 689 × 572; 47 KB
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Model działania lunazyny na epigenom2.png 689 × 572; 46 KB
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Non-Mendelian inheritance of mouse paramutations.png 1,994 × 3,699; 890 KB
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Normal-cancer-epigenome.png 1,007 × 1,123; 185 KB
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Normal-cancer-epigenome.svg 403 × 449; 502 KB
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NucleosomeRegulation.png 1,600 × 827; 235 KB
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Parthenogenesis - Bischoff, Steve R 2010.tif 2,573 × 1,647; 24.27 MB
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PD-1, PD-L1 and CTLA-4 targets of immune checkpoint inhibitors.png 1,244 × 922; 602 KB
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Peto-cromosomes-X.svg 744 × 1,052; 72 KB
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PKD-1 epigenetics regulation.jpg 800 × 489; 76 KB
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Regulation of lymphoid development and function by TET proteins in the mouse.png 1,126 × 1,359; 523 KB
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Regulation of transcription in mammals.jpg 2,524 × 1,372; 227 KB
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Sc omics summary.svg 704 × 581; 104 KB
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Schematic diagram of epigenetic mechanisms.jpg 850 × 745; 95 KB
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Segragation.svg 981 × 607; 8 KB
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Shelley Berger for the National Institutes of Health.jpg 867 × 849; 107 KB
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Somaclonal variation and epigenetics.pdf 1,239 × 1,754, 116 pages; 6.64 MB
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STARR-seq — Principles.png 1,367 × 565; 206 KB
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Targets of the epigenetic drugs.png 1,370 × 641; 481 KB
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TET enzymes and 5hmC in epigenetic regulation of mammalian neurobiology.jpg 3,730 × 1,694; 447 KB
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TET enzymes in the process of DNA demethylation.jpg 1,097 × 646; 125 KB
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TET enzymes target signalling pathways.jpg 807 × 901; 257 KB
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TET-mediated DNA modifications and demethylation.png 1,587 × 1,115; 358 KB
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Transgenerational inheritance.png 629 × 315; 27 KB
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Vorinostat Combined with DNMTi Epigenetically Controls the Proliferation of Lung Cancer Cells A549.pdf 1,239 × 1,752, 6 pages; 728 KB
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W Reik photo cropped.png 568 × 862; 541 KB
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Work flow for epigenome wide association study..png 685 × 600; 46 KB
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X chromosome inactivation v3.png 1,031 × 1,057; 184 KB
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Ген KDM6B и Церебральная Фолатная Недостаточность - Han et al 2023.pdf 1,239 × 1,752, 17 pages; 1.69 MB