Area of research
Molecular Biology
Research interest
Research interests include Genomics and Chromatin Dynamics, Epigenetics and DNA Methylation, RNA modifications and cancer, and RNA and protein synthesis mechanisms.
A cis-regulatory element controls expression of histone deacetylase 9 to fine-tune inflammasome-dependent chronic inflammation in atherosclerosis
Ezh2 Shapes T Cell Plasticity to Drive Atherosclerosis
Multicenter Longitudinal Quality Assessment of MS-Based Proteomics in Plasma and Serum
Multicenter evaluation of label-free quantification in human plasma on a high dynamic range benchmark set
Aberrant DNA repair reveals a vulnerability in histone H3.3-mutant brain tumors
Myeloid cells coordinately induce glioma cell-intrinsic and cell-extrinsic pathways for chemoresistance via GP130 signaling
PD-1 instructs a tumor-suppressive metabolic program that restricts glycolysis and restrains AP-1 activity in T cell lymphoma
A unified classification approach rating clinical utility of protein biomarkers across neurologic diseases
Proteolytically generated soluble Tweak Receptor Fn14 is a blood biomarker for γ‐secretase activity
HMGN5, an RNA or Nucleosome binding protein - potentially switching between the substrates to regulate gene expression
Endotoxinemia Accelerates Atherosclerosis Through Electrostatic Charge–Mediated Monocyte Adhesion
Mechanisms governing the pioneering and redistribution capabilities of the non-classical pioneer PU.1
Harmonization of quality metrics and power calculation in multi-omic studies
PWWP2A binds distinct chromatin moieties and interacts with an MTA1-specific core NuRD complex
MIR sequences recruit zinc finger protein ZNF768 to expressed genes
MacroH2A histone variants maintain nuclear organization and heterochromatin architecture
The novel component Kgd4 recruits the E3 subunit to the mitochondrial α-ketoglutarate dehydrogenase
Heterogeneous Antibody-Based Activity Assay for Lysine Specific Demethylase 1 (LSD1) on a Histone Peptide Substrate
Stepwise Evolution of Essential Centromere Function in a <i>Drosophila</i> Neogene
RNA-Interference Components Are Dispensable for Transcriptional Silencing of the Drosophila Bithorax-Complex
Df31 Protein and snoRNAs Maintain Accessible Higher-Order Structures of Chromatin
Myb-binding Protein 1a (Mybbp1a) Regulates Levels and Processing of Pre-ribosomal RNA