Area of research
Molecular Biology · Oncology
Research interest
Research interests include Kruppel-like factors research, DNA Repair Mechanisms, Metal complexes synthesis and properties, and Cancer-related gene regulation.
The protein phosphatase 2A-B56α complex regulates N-Myc degradation in neuroblastoma
Mutant PP2A Induces IGFBP2 Secretion to Promote Development of High-Grade Uterine Cancer.
Small-molecule modulators of B56-PP2A restore 4E-BP function to suppress eIF4E-dependent translation in cancer cells
Germline mutations in PPP2R1B in patients with a personal and family history of cancer
HMGA2 and protein leucine methylation drive pancreatic cancer lineage plasticity.
A PP2A molecular glue overcomes RAS/MAPK inhibitor resistance in KRAS-mutant non–small cell lung cancer
PP2A Attenuates Thoracic Aneurysm and Dissection in Mouse Models of Marfan Syndrome.
Genetics Evaluation Outcomes From an Academic Multidisciplinary Atypical Diabetes Program.
IDEXX Cell Line Verification from Mutant PP2A Induces IGFBP2 Secretion to Promote Development of High-Grade Uterine Cancer
Fig. S4 from Small-Molecule–Mediated Stabilization of PP2A Modulates the Homologous Recombination Pathway and Potentiates DNA Damage-Induced Cell Death
Supp Figure 6 from Mutant PP2A Induces IGFBP2 Secretion to Promote Development of High-Grade Uterine Cancer
Fig. S1 from Small-Molecule–Mediated Stabilization of PP2A Modulates the Homologous Recombination Pathway and Potentiates DNA Damage-Induced Cell Death
Supp Figure 10 from Mutant PP2A Induces IGFBP2 Secretion to Promote Development of High-Grade Uterine Cancer
Fig. S5 from Small-Molecule–Mediated Stabilization of PP2A Modulates the Homologous Recombination Pathway and Potentiates DNA Damage-Induced Cell Death
Supp Figure 1 from Mutant PP2A Induces IGFBP2 Secretion to Promote Development of High-Grade Uterine Cancer
Fig. S7 from Small-Molecule–Mediated Stabilization of PP2A Modulates the Homologous Recombination Pathway and Potentiates DNA Damage-Induced Cell Death
Table S1 from Small-Molecule–Mediated Stabilization of PP2A Modulates the Homologous Recombination Pathway and Potentiates DNA Damage-Induced Cell Death
Data from Mutant PP2A Induces IGFBP2 Secretion to Promote Development of High-Grade Uterine Cancer
Table S2 from Small-Molecule–Mediated Stabilization of PP2A Modulates the Homologous Recombination Pathway and Potentiates DNA Damage-Induced Cell Death
Supp Figure 5 from Mutant PP2A Induces IGFBP2 Secretion to Promote Development of High-Grade Uterine Cancer
Fig. S2 from Small-Molecule–Mediated Stabilization of PP2A Modulates the Homologous Recombination Pathway and Potentiates DNA Damage-Induced Cell Death
Supplementary Figure Legends from Mutant PP2A Induces IGFBP2 Secretion to Promote Development of High-Grade Uterine Cancer
PP2A activation drives aberrant macropinocytosis and cell death in pancreatic ductal adenocarcinoma
B56-alpha OE Vector Map from Mutant PP2A Induces IGFBP2 Secretion to Promote Development of High-Grade Uterine Cancer
Supp Figure 11 from Mutant PP2A Induces IGFBP2 Secretion to Promote Development of High-Grade Uterine Cancer
Table S3 from Small-Molecule–Mediated Stabilization of PP2A Modulates the Homologous Recombination Pathway and Potentiates DNA Damage-Induced Cell Death
Fig. S5 from Small-Molecule–Mediated Stabilization of PP2A Modulates the Homologous Recombination Pathway and Potentiates DNA Damage-Induced Cell Death
Fig. S3 from Small-Molecule–Mediated Stabilization of PP2A Modulates the Homologous Recombination Pathway and Potentiates DNA Damage-Induced Cell Death
Supp Figure 3 from Mutant PP2A Induces IGFBP2 Secretion to Promote Development of High-Grade Uterine Cancer
Supp Figure 2 from Mutant PP2A Induces IGFBP2 Secretion to Promote Development of High-Grade Uterine Cancer