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H3K9me3

  • Histone Modifications of H3k4me3, H3k9me3 and Lineage Gene Expressions in Chimeric Mouse Embryo

    Histone Modifications of H3k4me3, H3k9me3 and Lineage Gene Expressions in Chimeric Mouse Embryo

  • Simultaneous Epigenetic Perturbation and Genome Imaging Reveal Distinct Roles of H3k9me3 in Chromatin Architecture and Transcription

    Simultaneous Epigenetic Perturbation and Genome Imaging Reveal Distinct Roles of H3k9me3 in Chromatin Architecture and Transcription

  • Deciphering the Histone Code to Build the Genome Structure

    Deciphering the Histone Code to Build the Genome Structure

  • Dynamics of Transcription-Dependent H3k36me3 Marking by the SETD2:IWS1:SPT6 Ternary Complex

    Dynamics of Transcription-Dependent H3k36me3 Marking by the SETD2:IWS1:SPT6 Ternary Complex

  • Assessing the Epigenetic Status of Human Telomeres

    Assessing the Epigenetic Status of Human Telomeres

  • H3K36 Methylation Reprograms Gene Expression to Drive Early Gametocyte Development in Plasmodium Falciparum Jessica Connacher1, Gabrielle A

    H3K36 Methylation Reprograms Gene Expression to Drive Early Gametocyte Development in Plasmodium Falciparum Jessica Connacher1, Gabrielle A

  • Abo1 Is Required for the H3k9me2 to H3k9me3 Transition in Heterochromatin Wenbo Dong1, Eriko Oya1, Yasaman Zahedi1, Punit Prasad 1,2, J

    Abo1 Is Required for the H3k9me2 to H3k9me3 Transition in Heterochromatin Wenbo Dong1, Eriko Oya1, Yasaman Zahedi1, Punit Prasad 1,2, J

  • Targeted Demethylation of H3k9me3 and H3k36me3 Improves Somatic Cell Reprogramming

    Targeted Demethylation of H3k9me3 and H3k36me3 Improves Somatic Cell Reprogramming

  • Bivalent and Broad Chromatin Domains Regulate Pro-Metastatic Drivers In

    Bivalent and Broad Chromatin Domains Regulate Pro-Metastatic Drivers In

  • New Insights Into the Role of Histone Changes in Aging

    New Insights Into the Role of Histone Changes in Aging

  • Epigenomic Analysis Reveals DNA Motifs Regulating Histone Modifications in Human and Mouse

    Epigenomic Analysis Reveals DNA Motifs Regulating Histone Modifications in Human and Mouse

  • Histone Lysine Demethylases of JMJD2 Or KDM4 Family Are Important Epigenetic Regulators in Reward Circuitry in the Etiopathology of Depression

    Histone Lysine Demethylases of JMJD2 Or KDM4 Family Are Important Epigenetic Regulators in Reward Circuitry in the Etiopathology of Depression

  • Aggregating Hundreds of ENCODE Epigenomic Annotations to Predict Cell-State-Specific Regulatory Elements

    Aggregating Hundreds of ENCODE Epigenomic Annotations to Predict Cell-State-Specific Regulatory Elements

  • Original Article Expression of SIRT1, H3k9me3, H3k9ac and E-Cadherin and Its Correlations with Clinicopathological Characteristics in Gastric Cancer Patients

    Original Article Expression of SIRT1, H3k9me3, H3k9ac and E-Cadherin and Its Correlations with Clinicopathological Characteristics in Gastric Cancer Patients

  • Genome-Wide Redistribution of H3k27me3 Is Linked to Genotoxic Stress and Defective Growth

    Genome-Wide Redistribution of H3k27me3 Is Linked to Genotoxic Stress and Defective Growth

  • Relevance of Histone Marks H3k9me3 and H4k20me3 in Cancer

    Relevance of Histone Marks H3k9me3 and H4k20me3 in Cancer

  • Natural Antisense Transcript PEBP1P3 Regulates the RNA Expression, DNA Methylation and Histone Modification of CD45 Gene

    Natural Antisense Transcript PEBP1P3 Regulates the RNA Expression, DNA Methylation and Histone Modification of CD45 Gene

  • The Control of Gene Expression and Cell Identity by H3K9 Trimethylation Maria Ninova, Katalin Fejes Tóth* and Alexei A

    The Control of Gene Expression and Cell Identity by H3K9 Trimethylation Maria Ninova, Katalin Fejes Tóth* and Alexei A

Top View
  • Neonatal Monocytes Exhibit a Unique Histone Modification Landscape Jennifer R
  • H3k9me3 Monoclonal Antibody
  • Jmjd2b Antagonizes H3K9 Trimethylation at Pericentric Heterochromatin in Mammalian Cells
  • DNA Methylation Pathways and Their Crosstalk with Histone Methylation
  • Profiling the Epigenome at Home
  • Widespread Loss of the Silencing Epigenetic Mark H3k9me3 In
  • Reduction of Two Histone Marks, H3k9me3 and H3k27me3 by Epidrug Induces Neuroendocrine Differentiation in Prostate Cancer
  • Chromatin: Probing a Pirna Paradox
  • The Histone Mark H3k36me2 Recruits DNMT3A and Shapes the Intergenic DNA Methylation Landscape Daniel N
  • Stress-Induced Epigenetic Transcriptional Memory Of
  • TERRA G-Quadruplex RNA Interaction with TRF2 GAR Domain Is
  • Reprogramming of H3k9me3-Dependent Heterochromatin During Mammalian Embryo Development
  • KDM8, a H3k36me2 Histone Demethylase That Acts in the Cyclin A1 Coding Region to Regulate Cancer Cell Proliferation
  • Elucidation of the Two H3k36me3 Histone
  • Telomere Chromatin Establishment and Its Maintenance During Mammalian Development
  • The Histone Code of Senescence
  • Differentially Expressed Genes Are Marked by Histone 3 Lysine 9 Trimethylation in Human Cancer Cells
  • Antisilencing Role of the RNA-Directed DNA Methylation Pathway and a Histone Acetyltransferase in Arabidopsis


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