Publications
Selected landmark and recent work
Explore work on p53, p63 and p73, RNA-binding proteins, ferredoxin biology, Ninjurins and comparative oncology.
Nuclear Translocation of Mitochondrial Ferredoxin Reductase Is Required for Proper Cell-Cycle Progression
Molecular and Cellular Biology
Dissecting the Biological Functions of Various Isoforms of Ferredoxin Reductase
Cells
Development of Novel Peptides That Target the Ninjurin 1 and 2 Proteins for Cancer Treatment
Cancers
Ferredoxin 2 Is Critical for Tumor Suppression and Lipid Homeostasis but Dispensable for Embryonic Development
American Journal of Pathology
Ferredoxin 1 is essential for embryonic development and lipid homeostasis
eLife
Ninjurin 2, a Cell Adhesion Molecule and a Target of p53, Regulates p53 Expression and Cell Survival
Cells
Ferredoxin reductase and p53 are necessary for lipid homeostasis and tumor suppression through the ABCA1-SREBP pathway
Oncogene
Fine-tuning p53 activity by modulating the interaction between eIF4E and RBM38
Genes & Development
FDXR regulates TP73 tumor suppressor via IRP2 to modulate aging and tumor suppression
Journal of Pathology
Mutant p53 antagonizes p63/p73-mediated tumor suppression via Notch1
Proceedings of the National Academy of Sciences
Ninjurin 1 has two opposing functions in tumorigenesis in a p53-dependent manner
Proceedings of the National Academy of Sciences
The ferredoxin reductase gene is regulated by the p53 family and sensitizes cells to oxidative stress-induced apoptosis
Molecular and Cellular Biology