Area of research
Molecular Biology · Materials Chemistry
Research interest
Research interests include Biology, Chemistry, Cell biology, Computational biology, KRAS, and Cancer research.
Structural insights into isoform-specific RAS-PI3Kα interactions and the role of RAS in PI3Kα activation
BBO-10203 inhibits tumor growth without inducing hyperglycemia by blocking RAS-PI3Kα interaction
Biophysical and structural analysis of KRAS switch-II pocket inhibitors reveals allele-specific binding constraints
Molecular glues that facilitate RAS binding to PI3Kα promote glucose uptake without insulin
Structural basis for LZTR1 recognition of RAS GTPases for degradation
Blocking C-terminal processing of KRAS4b via a direct covalent attack on the CaaX-box cysteine
Discovery of BBO-8520, a First-In-Class Direct and Covalent Dual Inhibitor of GTP-Bound (ON) and GDP-Bound (OFF) KRASG12C
Functional and structural insights into RAS effector proteins
Consensus on the RAS dimerization hypothesis: Strong evidence for lipid-mediated clustering but not for G-domain-mediated interactions
RAS-dependent RAF-MAPK hyperactivation by pathogenic RIT1 is a therapeutic target in Noonan syndrome–associated cardiac hypertrophy
Machine learning–driven multiscale modeling reveals lipid-dependent dynamics of RAS signaling proteins
Structure of the SHOC2–MRAS–PP1C complex provides insights into RAF activation and Noonan syndrome
KRAS interaction with RAF1 RAS-binding domain and cysteine-rich domain provides insights into RAS-mediated RAF activation
Structural Insights into the SPRED1-Neurofibromin-KRAS Complex and Disruption of SPRED1-Neurofibromin Interaction by Oncogenic EGFR
The small molecule BI-2852 induces a nonfunctional dimer of KRAS
KRAS G13D sensitivity to neurofibromin-mediated GTP hydrolysis
RIT1 oncoproteins escape LZTR1-mediated proteolysis
RAS Proteins and Their Regulators in Human Disease
Structural basis of recognition of farnesylated and methylated KRAS4b by PDEδ
A Phosphate-Binding Pocket within the Platform-PAZ-Connector Helix Cassette of Human Dicer
INVOLVED IN DE NOVO 2-containing complex involved in RNA-directed DNA methylation in <i>Arabidopsis</i>