Area of research
Molecular Biology
Research interest
Research interests include RNA modifications and cancer, RNA and protein synthesis mechanisms, Epigenetics and DNA Methylation, and Developmental Biology and Gene Regulation.
The two-step purification method ViREn identifies a single NSUN6-mediated 5-methylcytosine modification promoting dengue virus RNA genome turnover
TGT Damages its Substrate tRNAs by the Formation of Abasic Sites in the Anticodon Loop
Queuosine is incorporated into precursor tRNA before splicing
<scp>Queuosine‐tRNA</scp> promotes sex‐dependent learning and memory formation by maintaining codon‐biased translation elongation speed
Functional integration of a semi-synthetic azido-queuosine derivative into translation and a tRNA modification circuit
Correction to ‘RiboVIEW: a computational framework for visualization, quality control and statistical analysis of ribosome profiling data’
RNA marker modifications reveal the necessity for rigorous preparation protocols to avoid artifacts in epitranscriptomic analysis
Analysis of Queuosine tRNA Modification Using APB Northern Blot Assay
Translational adaptation to heat stress is mediated by RNA 5‐methylcytosine in <i>Caenorhabditis elegans</i>
Queuine Micronutrient Deficiency Promotes Warburg Metabolism and Reversal of the Mitochondrial ATP Synthase in Hela Cells
Sperm RNA code programmes the metabolic health of offspring
Queuine links translational control in eukaryotes to a micronutrient from bacteria
rRNA and tRNA Bridges to Neuronal Homeostasis in Health and Disease
Division of labour: tRNA methylation by the NSun2 tRNA methyltransferases Trm4a and Trm4b in fission yeast
RiboVIEW: a computational framework for visualization, quality control and statistical analysis of ribosome profiling data
Dnmt2 mediates intergenerational transmission of paternally acquired metabolic disorders through sperm small non-coding RNAs
Queuosine‐modified tRNAs confer nutritional control of protein translation
Loss of Proteostasis Is a Pathomechanism in Cockayne Syndrome
BisAMP: A web-based pipeline for targeted RNA cytosine-5 methylation analysis
806 A circulus vitiosus causes loss of proteostasis in Cockayne syndrome
Statistically robust methylation calling for whole-transcriptome bisulfite sequencing reveals distinct methylation patterns for mouse RNAs
Ribosomal transcription is regulated by PGC-1alpha and disturbed in Huntington’s disease
Statistically robust methylation calling for whole-transcriptome bisulfite sequencing reveals distinct methylation patterns for mouse RNAs
Declined presentation loss of tRNA-methylation at cytosine 38 by Dnmt2 induces a hematopoietic stem cell aging-like phenotype
Genome recoding by tRNA modifications
The <scp>tRNA</scp> methyltransferase Dnmt2 is required for accurate polypeptide synthesis during haematopoiesis
RNA–Mediated Epigenetic Heredity Requires the Cytosine Methyltransferase Dnmt2
The Mouse Cytosine-5 RNA Methyltransferase NSun2 Is a Component of the Chromatoid Body and Required for Testis Differentiation
RNA cytosine methylation by Dnmt2 and NSun2 promotes tRNA stability and protein synthesis
Extensive Methylation of Promoter Sequences Silences Lentiviral Transgene Expression During Stem Cell Differentiation In Vivo
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