Area of research
Physiology · Molecular Biology
Research interest
Research interests include Alzheimer's disease research and treatments, Supramolecular Self-Assembly in Materials, Protein Structure and Dynamics, and Advanced NMR Techniques and Applications.
Sensitivity-Enhanced Solid-State NMR Detection of Structural Differences and Unique Polymorphs in Pico- to Nanomolar Amounts of Brain-Derived and Synthetic 42-Residue Amyloid-β Fibrils
Atomic-level differences between brain parenchymal- and cerebrovascular-seeded Aβ fibrils
Upregulation of polycistronic microRNA-143 and microRNA-145 in colonocytes suppresses colitis and inflammation-associated colon cancer
Intracellular MLCK1 diversion reverses barrier loss to restore mucosal homeostasis
β‐Amyloid aggregation and heterogeneous nucleation
Molecular Analysis of Lipid-Reactive Vδ1 γδ T Cells Identified by CD1c Tetramers
Molecular Basis of Substrate Recognition and Degradation by Human Presequence Protease
Structural Heterogeneity in Transmembrane Amyloid Precursor Protein Homodimer Is a Consequence of Environmental Selection
Novel RNA-binding Protein P311 Binds Eukaryotic Translation Initiation Factor 3 Subunit b (eIF3b) to Promote Translation of Transforming Growth Factor β1-3 (TGF-β1-3)
Molecular Structure of β-Amyloid Fibrils in Alzheimer’s Disease Brain Tissue
Relapse or Eradication of Cancer Is Predicted by Peptide-Major Histocompatibility Complex Affinity
Transmembrane Fragment Structures of Amyloid Precursor Protein Depend on Membrane Surface Curvature
Glyoxalase 1 increases anxiety by reducing GABAA receptor agonist methylglyoxal