Engineering metalloenzymes for sustainable carbon transformation
Expanding enzymatic reactions beyond natural amino acid capabilities
Designing disruptive metalloenzyme catalysts for biotechnological and industrial applications
Computational modeling of enzyme tunnels to visualize and optimize ligand migration
Structural redesign of enzyme tunnels for enhanced efficiency and selectivity
Selective control of oxygen and inhibitor flow to enhance the stability of sensitive metalloenzymes
Sustainable bioconversion strategies for industrial waste upcycling and gas utilization
Next-generation enzyme engineering for H₂, N₂, and carbon-based bioconversion
Cutting-edge research platforms for enzymology-biotechnology integration