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Lil nálepka kampus klec na morc3 bydlení Příjmení Posel

The role of MORC3 in silencing transposable elements in mouse embryonic  stem cells | Epigenetics & Chromatin | Full Text
The role of MORC3 in silencing transposable elements in mouse embryonic stem cells | Epigenetics & Chromatin | Full Text

The role of MORC3 in silencing transposable elements in mouse embryonic  stem cells | Epigenetics & Chromatin | Full Text
The role of MORC3 in silencing transposable elements in mouse embryonic stem cells | Epigenetics & Chromatin | Full Text

Morc3 mutant mice exhibit reduced cortical area and thickness, accompanied  by altered haematopoietic stem cells niche and bone cell differentiation |  Scientific Reports
Morc3 mutant mice exhibit reduced cortical area and thickness, accompanied by altered haematopoietic stem cells niche and bone cell differentiation | Scientific Reports

Mouse MORC3 is a GHKL ATPase that localizes to H3K4me3 marked chromatin |  PNAS
Mouse MORC3 is a GHKL ATPase that localizes to H3K4me3 marked chromatin | PNAS

MORC3 Forms Nuclear Condensates through Phase Separation
MORC3 Forms Nuclear Condensates through Phase Separation

Morc3 silences endogenous retroviruses by enabling Daxx-mediated histone  H3.3 incorporation | Nature Communications
Morc3 silences endogenous retroviruses by enabling Daxx-mediated histone H3.3 incorporation | Nature Communications

The role of MORC3 in silencing transposable elements in mouse embryonic  stem cells | Epigenetics & Chromatin | Full Text
The role of MORC3 in silencing transposable elements in mouse embryonic stem cells | Epigenetics & Chromatin | Full Text

The MORC family
The MORC family

Uncovering the mechanistic basis for specific recognition of monomethylated  H3K4 by the CW domain of Arabidopsis histone methyltransferase SDG8 -  Journal of Biological Chemistry
Uncovering the mechanistic basis for specific recognition of monomethylated H3K4 by the CW domain of Arabidopsis histone methyltransferase SDG8 - Journal of Biological Chemistry

Mouse MORC3 is a GHKL ATPase that localizes to H3K4me3 marked chromatin |  PNAS
Mouse MORC3 is a GHKL ATPase that localizes to H3K4me3 marked chromatin | PNAS

The mTOR chromatin-bound interactome in prostate cancer - ScienceDirect
The mTOR chromatin-bound interactome in prostate cancer - ScienceDirect

Frontiers | Coronavirus, the King Who Wanted More Than a Crown: From Common  to the Highly Pathogenic SARS-CoV-2, Is the Key in the Accessory Genes?
Frontiers | Coronavirus, the King Who Wanted More Than a Crown: From Common to the Highly Pathogenic SARS-CoV-2, Is the Key in the Accessory Genes?

Mouse MORC3 is a GHKL ATPase that localizes to H3K4me3 marked chromatin |  PNAS
Mouse MORC3 is a GHKL ATPase that localizes to H3K4me3 marked chromatin | PNAS

Frontiers | A Tale of Usurpation and Subversion: SUMO-Dependent Integrity  of Promyelocytic Leukemia Nuclear Bodies at the Crossroad of Infection and  Immunity
Frontiers | A Tale of Usurpation and Subversion: SUMO-Dependent Integrity of Promyelocytic Leukemia Nuclear Bodies at the Crossroad of Infection and Immunity

Integrative Chemical Biology Approaches to Deciphering the Histone Code: A  Problem-Driven Journey | Accounts of Chemical Research
Integrative Chemical Biology Approaches to Deciphering the Histone Code: A Problem-Driven Journey | Accounts of Chemical Research

Promyelocytic leukemia-nuclear body proteins: herpesvirus enemies,  accomplices, or both? | Future Virology
Promyelocytic leukemia-nuclear body proteins: herpesvirus enemies, accomplices, or both? | Future Virology

Descriptive transcriptome analysis of tendon derived fibroblasts following  in-vitro exposure to advanced glycation end products | PLOS ONE
Descriptive transcriptome analysis of tendon derived fibroblasts following in-vitro exposure to advanced glycation end products | PLOS ONE

Binding of the SARS-CoV-2 envelope E protein to human BRD4 is essential for  infection - ScienceDirect
Binding of the SARS-CoV-2 envelope E protein to human BRD4 is essential for infection - ScienceDirect

MaxQuant.Live Enables Enhanced Selectivity and Identification of Peptides  Modified by Endogenous SUMO and Ubiquitin | Journal of Proteome Research
MaxQuant.Live Enables Enhanced Selectivity and Identification of Peptides Modified by Endogenous SUMO and Ubiquitin | Journal of Proteome Research

IJMS | Free Full-Text | Role of miRNAs in Human T Cell Leukemia Virus Type  1 Induced T Cell Leukemia: A Literature Review and Bioinformatics Approach  | HTML
IJMS | Free Full-Text | Role of miRNAs in Human T Cell Leukemia Virus Type 1 Induced T Cell Leukemia: A Literature Review and Bioinformatics Approach | HTML

Morc3 mutant mice exhibit reduced cortical area and thickness, accompanied  by altered haematopoietic stem cells niche and bone cell differentiation |  Scientific Reports
Morc3 mutant mice exhibit reduced cortical area and thickness, accompanied by altered haematopoietic stem cells niche and bone cell differentiation | Scientific Reports

Viruses | Free Full-Text | “Non-Essential” Proteins of HSV-1 with Essential  Roles In Vivo: A Comprehensive Review | HTML
Viruses | Free Full-Text | “Non-Essential” Proteins of HSV-1 with Essential Roles In Vivo: A Comprehensive Review | HTML

The role of MORC3 in silencing transposable elements in mouse embryonic  stem cells | Epigenetics & Chromatin | Full Text
The role of MORC3 in silencing transposable elements in mouse embryonic stem cells | Epigenetics & Chromatin | Full Text

Binding of the SARS-CoV-2 envelope E protein to human BRD4 is essential for  infection - ScienceDirect
Binding of the SARS-CoV-2 envelope E protein to human BRD4 is essential for infection - ScienceDirect

Mouse MORC3 is a GHKL ATPase that localizes to H3K4me3 marked chromatin |  PNAS
Mouse MORC3 is a GHKL ATPase that localizes to H3K4me3 marked chromatin | PNAS

Capturing Post-Translational Modification-Triggered Protein–Protein  Interactions Using Dual Noncanonical Amino Acid Mutagenesis | ACS Chemical  Biology
Capturing Post-Translational Modification-Triggered Protein–Protein Interactions Using Dual Noncanonical Amino Acid Mutagenesis | ACS Chemical Biology

MORC3 Forms Nuclear Condensates through Phase Separation
MORC3 Forms Nuclear Condensates through Phase Separation