Area of research
Molecular Biology · Cancer Research
Research interest
Research interests include Biology, DNA methylation, Epigenetics, Cell biology, Chromatin, and Histone.
Multi‐omic rejuvenation of naturally aged tissues by a single cycle of transient reprogramming
Global hyperactivation of enhancers stabilizes human and mouse naive pluripotency through inhibition of CDK8/19 Mediator kinases
Epigenetic loss of RNA-methyltransferase NSUN5 in glioma targets ribosomes to drive a stress adaptive translational program
Chromatin regulation by Histone H4 acetylation at Lysine 16 during cell death and differentiation in the myeloid compartment
Evolutionary routes and KRAS dosage define pancreatic cancer phenotypes
Epigenetic prediction of response to anti-PD-1 treatment in non-small-cell lung cancer: a multicentre, retrospective analysis
Abstract 391: Evolutionary trajectories and <i>KRAS</i> gene dosage define pancreatic cancer phenotypes
Chromatin regulation by Histone H4 acetylation at Lysine 16 during cell death and differentiation in the myeloid compartment
Chromatin regulation by Histone H4 acetylation at Lysine 16 during cell death and differentiation in the myeloid compartment
Quantitative comparison of DNA methylation assays for biomarker development and clinical applications
Allele-Specific Reprogramming of Cancer Metabolism by the Long Non-coding RNA CCAT2
Allele-Specific Reprogramming of Cancer Metabolism by the Long Non-coding RNA CCAT2
PMC 2016cited by 0position: middle
DNA Methylation Profiling in Pheochromocytoma and Paraganglioma Reveals Diagnostic and Prognostic Markers
Nuclear DICKKOPF-1 as a biomarker of chemoresistance and poor clinical outcome in colorectal cancer
Reconstructing the DNA Methylation Maps of the Neandertal and the Denisovan
A Genetic Progression Model of BrafV600E-Induced Intestinal Tumorigenesis Reveals Targets for Therapeutic Intervention
The B cell transcription program mediates hypomethylation and overexpression of key genes in Epstein-Barr virus-associated proliferative conversion
Distinct DNA methylomes of newborns and centenarians