Recombinant proteases and functional enzyme systems engineered for molecular biology and process optimization. Validated under RUO conditions.
Developed with rigorous scientific methodology and validated for research laboratory applications.

Proteolytic enzymes with specified activity rates and substrate preferences for protein research applications.
Polymerases, ligases, and nucleases with application-specific fidelity and kinetic profiles.
Enzymes optimized for stability and function in varying temperature, pH, and solvent conditions.
Broad spectrum serine protease with strong proteolytic activity. Ideal for nucleic acid preparation and protein digestion applications.
Active across a wide pH range (4-12) and maintains activity in the presence of detergents, chaotropic salts, and at elevated temperatures up to 65°C.
• Activity: ≥30 U/mg
• Format: Lyophilized powder
• Optimal pH: 7.5-12.0
Our enzyme engineering methodology combines computational modeling with laboratory validation to address specific research challenges.
We systematically test each enzyme across standard laboratory conditions to document specific activity rates, substrate preferences, and stability parameters.
Selection-based methods to identify optimal enzyme variants from diverse genetic libraries.
Computational modeling based on established biophysical principles to predict enzyme behavior.
Systematic testing of enzyme performance across temperature, pH, and buffer conditions.
Contact us for enzyme specifications, activity data, and compatibility information for your research protocols.
connect@enza.com