Area of research
Molecular Biology · Radiology, Nuclear Medicine and Imaging
Research interest
Research interests include RNA and protein synthesis mechanisms, RNA Research and Splicing, RNA modifications and cancer, and Monoclonal and Polyclonal Antibodies Research.
VAPA at the inner nuclear membrane affects nuclear lamins and nuclear morphology.
Distinct steps of nuclear maturation of human pre-60S complexes require the activity of GTPases including GNL3L.
Sperm, egg, and embryo proteins critical for genetic adaptation of herring to low salinity in the Baltic Sea.
2'-O-methylation-dependent installation of N<sup>2</sup>-methylguanosine in the U6 internal stem loop facilitates efficient spliceosome assembly.
Mechanistic insights into recruitment and regulation of the RNA helicase UPF1 in replication-dependent histone mRNA decay.
Mass spectrometric proteome profiling using a deep spectral library reveals homogenization of right and left atrial proteomes in persistent atrial fibrillation patients.
Cell-autonomous restoration of splicing homeostasis and RP11 phenotype in patient-derived RPE and retinal organoids by PRPF31.AAV gene therapy
Two components of the early ASH1 mRNA transport machinery undergo PUN motif-dependent liquid-liquid-phase separation
Structural basis of Nipah virus RNA synthesis.
Structures of aberrant spliceosome intermediates on their way to disassembly.
Chemical crosslinking extends and complements UV crosslinking in analysis of RNA/DNA nucleic acid–protein interaction sites by mass spectrometry
Identification and characterization of a human MORC2 DNA binding region that is required for gene silencing.
IWS1 positions downstream DNA to globally stimulate Pol II elongation.
Chemical crosslinking extends and complements UV crosslinking in analysis of RNA/DNA nucleic acid-protein interaction sites by mass spectrometry.
Selective ubiquitination of drug-like small molecules by the ubiquitin ligase HUWE1.
Biocompatible sulfonium-based covalent probes for endogenous tubulin fluorescence nanoscopy in live and fixed cells.
Molecular mechanism of co-transcriptional H3K36 methylation by SETD2.
Selective silencing of antibiotic-tethered ribosomes as a resistance mechanism against aminoglycosides.
Profiling the LAM Family of Contact Site Tethers Provides Insights into Their Regulation and Function.
Author Correction: Structural basis of Nipah virus RNA synthesis.
The formation of chaperone-rich GET bodies depends on the tetratricopeptide repeat region of Sgt2 and is reversed by NADH.
Provirus deletion from <i>Haloferax volcanii</i> affects motility, stress resistance, and CRISPR RNA expression.
Phosphoproteomic identification of Mos-MAPK targets in meiotic cell cycle and asymmetric oocyte divisions.
Selective silencing of antibiotic-tethered ribosomes as a resistance mechanism against aminoglycosides
Supplementary Tables S1-S12 from Targeting N-linked Glycosylation for the Therapy of Aggressive Lymphomas
Data from Targeting N-linked Glycosylation for the Therapy of Aggressive Lymphomas
Biocompatible Sulfonium-Based Covalent Probes For Endogenous Tubulin Fluorescence Nanoscopy In Live And Fixed Cells
Biocompatible sulfonium-based covalent probes for endogenous tubulin fluorescence nanoscopy in live and fixed cells
Supplementary Figures S1-10 from Targeting N-linked Glycosylation for the Therapy of Aggressive Lymphomas
Structural basis of Integrator-dependent RNA polymerase II termination.