Area of research
Cell Biology · Molecular Biology
Research interest
Research interests include Cell biology, Biology, Microtubule, Mitosis, Kinetochore, and Centromere.
Crossover patterning through condensation and coarsening of pro-crossover factors
Digital reconstruction of full embryos during early mouse organogenesis
Maternal ELL3 loss-of-function leads to oocyte aneuploidy and early miscarriage
Standard: Human gastric organoids
Mitofissin Guides Mitochondrial Fission by Interacting with Drp1
Mechanism of Ψ-Pro/C-degron recognition by the CRL2FEM1B ubiquitin ligase
CSPP1 stabilizes microtubules by capping both plus and minus ends
Fluorescence complementation-based FRET imaging reveals centromere assembly dynamics
Standard: Human gastric cancer organoids
Phase separation of EB1 guides microtubule plus-end dynamics
Structural insights into human CCAN complex assembled onto DNA
Mad2 promotes Cyclin B2 recruitment to the kinetochore for guiding accurate mitotic checkpoint
Dynamic crotonylation of EB1 by TIP60 ensures accurate spindle positioning in mitosis
Phase separation drives decision making in cell division
CASK modulates the assembly and function of the Mint1/Munc18-1 complex to regulate insulin secretion
NDP52 tunes cortical actin interaction with astral microtubules for accurate spindle orientation
Molecular basis for CENP-N recognition of CENP-A nucleosome on the human kinetochore
Acetylation of ACAP4 regulates CCL18-elicited breast cancer cell migration and invasion
Acetylation of Aurora B by TIP60 ensures accurate chromosomal segregation
The Microtubule Plus End Tracking Protein TIP150 Interacts with Cortactin to Steer Directional Cell Migration
Dynamic localization of Mps1 kinase to kinetochores is essential for accurate spindle microtubule attachment
IRE1–RACK1 axis orchestrates ER stress preconditioning-elicited cytoprotection from ischemia/reperfusion injury in liver
Signaling Scaffold Protein IQGAP1 Interacts with Microtubule Plus-end Tracking Protein SKAP and Links Dynamic Microtubule Plus-end to Steer Cell Migration
DDA3 associates with microtubule plus ends and orchestrates microtubule dynamics and directional cell migration