Area of research
Molecular Biology
Research interest
Research interests include RNA Research and Splicing, RNA and protein synthesis mechanisms, RNA modifications and cancer, and Molecular Biology Techniques and Applications.
The two-step purification method ViREn identifies a single NSUN6-mediated 5-methylcytosine modification promoting dengue virus RNA genome turnover
<scp>Queuosine‐tRNA</scp> promotes sex‐dependent learning and memory formation by maintaining codon‐biased translation elongation speed
Stress-induced nuclear speckle reorganization is linked to activation of immediate early gene splicing
Publisher Correction: Nascent Ribo-Seq measures ribosomal loading time and reveals kinetic impact on ribosome density
Control of immediate early gene expression by CPEB4-repressor complex-mediated mRNA degradation
Preferential translation of p53 target genes
RNF219 attenuates global mRNA decay through inhibition of CCR4-NOT complex-mediated deadenylation
Nascent Ribo-Seq measures ribosomal loading time and reveals kinetic impact on ribosome density
CDK1 couples proliferation with protein synthesis
CDK1 couples proliferation with protein synthesis
The cancer-associated microprotein CASIMO1 controls cell proliferation and interacts with squalene epoxidase modulating lipid droplet formation
DNMT and HDAC inhibitors induce cryptic transcription start sites encoded in long terminal repeats
Acetylation-Dependent Control of Global Poly(A) RNA Degradation by CBP/p300 and HDAC1/2
Epigenetic Drug Treatment Globally Induces Cryptic Transcription Start Sites Encoded in Long Terminal Repeats
Translational Regulation of Specific mRNAs Controls Feedback Inhibition and Survival during Macrophage Activation
Roquin Promotes Constitutive mRNA Decay via a Conserved Class of Stem-Loop Recognition Motifs
Genome-Wide Assessment of AU-Rich Elements by the AREScore Algorithm
AU-Rich Element-Mediated mRNA Decay Can Occur Independently of the miRNA Machinery in Mouse Embryonic Fibroblasts and Drosophila S2-Cells