Area of research
Molecular Biology · Biophysics
Research interest
Research interests include DNA and Nucleic Acid Chemistry, Genomics and Chromatin Dynamics, RNA and protein synthesis mechanisms, and Advanced Fluorescence Microscopy Techniques.
Dynamics of the nucleosomal histone H3 N-terminal tail revealed by high precision single-molecule FRET
Assembly Kinetics of Vimentin Tetramers to Unit-Length Filaments: A Stopped-Flow Study
Widefield High Frame Rate Single-Photon SPAD Imagers for SPIM-FCS
Random Motion of Chromatin Is Influenced by Lamin A Interconnections
Insights into the molecular architecture and histone H3-H4 deposition mechanism of yeast Chromatin assembly factor 1
Nucleosome repositioning during differentiation of a human myeloid leukemia cell line
Transcriptomes reflect the phenotypes of undifferentiated, granulocyte and macrophage forms of HL-60/S4 cells
Defining the epichromatin epitope
Effects of charge-modifying mutations in histone H2A α3-domain on nucleosome stability assessed by single-pair FRET and MD simulations
Protein Flexibility and Synergy of HMG Domains Underlie U-Turn Bending of DNA by TFAM in Solution
Nucleosome Opening Kinetics and the Influence of Histone Modifications Studied by Single Molecule FRET
Author response: Insights into the molecular architecture and histone H3-H4 deposition mechanism of yeast Chromatin assembly factor 1
Histone Acetylation Regulates Chromatin Accessibility: Role of H4K16 in Inter-nucleosome Interaction
EGFP oligomers as natural fluorescence and hydrodynamic standards
In Vitro Assembly Kinetics of Cytoplasmic Intermediate Filaments: A Correlative Monte Carlo Simulation Study
Chromatin Dynamics are Controlled by Nuclear Lamin A: Light Sheet Microscopy - FCS Studies
Nucleosome Dynamics Studied by Förster Resonance Energy Transfer
Imaging fluorescence (cross-) correlation spectroscopy in live cells and organisms
Opposing roles of H3- and H4-acetylation in the regulation of nucleosome structure—a FRET study
The effect of DNA supercoiling on nucleosome structure and stability
The Role of Histone Tails in the Nucleosome: A Computational Study
Dual-Color Fluorescence Cross-Correlation Spectroscopy on a Single Plane Illumination Microscope (SPIM-FCCS)
Ligand Binding Shifts Highly Mobile Retinoid X Receptor to the Chromatin-Bound State in a Coactivator-Dependent Manner, as Revealed by Single-Cell Imaging
The conformational state of the nucleosome entry–exit site modulates TATA box-specific TBP binding
Retrotransposon Alu is enriched in the epichromatin of HL-60 cells
How Histone Modifications Change Nucleosome Stability – FRET Studies on Single Molecules and in Bulk
Selective Acetylation Reveals Distinct Roles of Histones H3 and H4 in Nucleosome Dynamics - a FRET Study
Correlating Mobility and Interaction of Transcription Factors by SPIM-FCS