Overview
Hydratases are a subgroup of lyases that facilitate the reversible addition or elimination of water (H₂O) to double bonds in organic compounds, without breaking covalent bonds (non-hydrolytic). They play critical roles in metabolic pathways such as the citric acid cycle and fatty acid oxidation. These enzymes are classified under EC 4.2.1.x and exhibit high substrate specificity. Industrial interest stems from their ability to perform stereoselective reactions under mild conditions, reducing the need for harsh chemical catalysts.
Physical and Chemical Properties
Most hydratases function optimally at physiological pH (6-8) and moderate temperatures (20-40°C), though some thermostable variants exist. Activity depends on cofactors like Mg²⁺ or Fe-S clusters in certain isoforms. They typically exhibit Michaelis-Menten kinetics, with reaction rates influenced by substrate concentration and allosteric regulators. Stability varies by source; microbial-derived hydratases often outperform mammalian isoforms in industrial settings due to higher robustness.
Main Applications
In pharmaceuticals, hydratases enable green synthesis of chiral intermediates for drugs like statins. Fumarase (a hydratase subclass) produces L-malic acid for food additives. Bioremediation utilizes hydratases to degrade xenobiotics. Recent advances include engineering hydratases for CO₂ fixation pathways, demonstrating potential in carbon capture technologies. Their regioselectivity is exploited in fine chemical manufacturing.
Safety and Storage
Although generally low-risk, powdered forms may cause respiratory irritation. Use dust masks and gloves during handling. Liquid formulations often contain stabilizers like glycerol that require proper disposal. For storage, maintain -20°C in airtight containers with desiccants. Lyophilized enzymes retain activity for years when moisture-free, while solutions should be aliquoted to minimize freeze-thaw degradation. Always monitor activity post-reconstitution.
B2B Procurement Guide
Specify required activity (e.g., μmol/min/mg) and purity (SDS-PAGE verified). Industrial-scale buyers should request batch consistency data and thermostability profiles for process integration. Leading suppliers include Sigma-Aldrich and Novozymes. Consider recombinant vs. native sources—the former offers higher purity but may lack post-translational modifications critical for function. MOQs vary; contract manufacturing is viable for bulk needs.
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