Area of research
Oncology · Ecology
Research interest
Research interests include Polyomavirus and related diseases, Bacteriophages and microbial interactions, Cancer-related Molecular Pathways, and Plant Virus Research Studies.
YAP1 and WWTR1 expression inversely correlates with neuroendocrine markers in Merkel cell carcinoma
Virology under the Microscope—a Call for Rational Discourse
CDC7-independent G1/S transition revealed by targeted protein degradation
Reversal of viral and epigenetic HLA class I repression in Merkel cell carcinoma
An international report on bacterial communities in esophageal squamous cell carcinoma
Subtype heterogeneity and epigenetic convergence in neuroendocrine prostate cancer
STRIPAK directs PP2A activity toward MAP4K4 to promote oncogenic transformation of human cells
A Murine Model of Chronic Lymphocytic Leukemia Based on B Cell-Restricted Expression of Sf3b1 Mutation and Atm Deletion
SPOP Promotes Nanog Destruction to Suppress Stem Cell Traits and Prostate Cancer Progression
Transcriptional landscape of the human cell cycle
Merkel Cell Polyomavirus Exhibits Dominant Control of the Tumor Genome and Transcriptome in Virus-Associated Merkel Cell Carcinoma
Epidemiology, biology and therapy of Merkel cell carcinoma: conclusions from the EU project IMMOMEC
Abstract 562: Oncovirus detection and integration analysis from human tumor samples using targeted massively parallel sequencing
Integration of TP53, DREAM, MMB-FOXM1 and RB-E2F target gene analyses identifies cell cycle gene regulatory networks
Inhibition of Rb Phosphorylation Leads to mTORC2-Mediated Activation of Akt
Merkel Cell Polyomavirus Small T Antigen Promotes Pro-Glycolytic Metabolic Perturbations Required for Transformation
The DREAM complex: master coordinator of cell cycle-dependent gene expression
A cornucopia of human polyomaviruses
The DREAM Complex Mediates GIST Cell Quiescence and Is a Novel Therapeutic Target to Enhance Imatinib-Induced Apoptosis
Interpreting cancer genomes using systematic host network perturbations by tumour virus proteins
Structure of a Glomulin-RBX1-CUL1 Complex: Inhibition of a RING E3 Ligase through Masking of Its E2-Binding Surface
The Glomuvenous Malformation Protein Glomulin Binds Rbx1 and Regulates Cullin RING Ligase-Mediated Turnover of Fbw7
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