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l-Dopa synthesis using tyrosinase immobilized on magnetic beads
Authors:Sevinc Tuncagil   Senem Kiralp Kayahan   Gulay Bayramoglu   M. Yakup Arica  Levent Toppare  
Affiliation:aDepartment of Chemistry, Middle East Technical University, 06531 Ankara, Turkey;bDepartment of Chemistry, Gazi University, 06500 Teknik Okullar, Ankara, Turkey;cDepartment of Biology, Gazi University, 06500 Teknik Okullar, Ankara, Turkey
Abstract:Magnetic beads were prepared via suspension polymerization of glycidyl methacrylate (GMA) and methyl methacrylate (MMA) in the presence of ferric ions. Following polymerization, thermal co-precipitation of the Fe(III) ions in the beads with Fe(II) ions under alkaline condition resulted in encapsulation of Fe3O4 nano-crystals within the polymer matrix. The magnetic beads were activated with glutaraldehyde, and tyrosinase enzyme was covalently immobilized on the support via reaction of amino groups under mild conditions. The immobilized enzyme was used for the synthesis of l-Dopa (1-3,4-dihydroxy phenylalanine) which is a precursor of dopamine. The immobilized enzyme was characterized by temperature, pH, operational and storage stability experiments. Kinetic parameters, maximum velocity of the enzyme (Vmax) and Michaelis–Menten constant (Km) values were determined as 1.05 U/mg protein and 1.0 mM for 50–75 μm and 2.00 U/mg protein and 4.0 mM for 75–150 μm beads fractions, respectively. Efficiency factor and catalytic efficiency were found to be 1.39 and 0.91 for 75–150 μm beads and 0.73 and 0.75 for 50–75 μm beads fractions, respectively. The catalytic efficiency of the soluble tyrosinase was 0.37. The amounts of immobilized protein were on the 50–75 μm and 75–150 μm fractions were 2.7 and 2.8 mg protein/g magnetic beads, respectively.
Keywords:Magnetic beads   Enzyme immobilization   Tyrosinase     smCaps"  >l-Dopa synthesis
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