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Imidazolium chloride‐based ionic liquid‐assisted improvement of lipase activity in organic solvents
Authors:Somayeh Daneshjoo  Neda Akbari  Abbas Akhavan Sepahi  Bijan Ranjbar  Ramezan‐Ali Khavarinejad  Khosro Khajeh
Institution:1. Department of Microbiology, Faculty of Science, Science and Research Branch, Islamic Azad University, Tehran, Iran;2. Department of Microbiology, Faculty of Science, Islamic Azad University, Arak, Iran;3. Department of Microbiology, Faculty of Science, Islamic Azad University, North Branch of Tehran, Iran;4. Department of Biochemistry, Faculty of Biological Science, Tarbiat Modares University, Tehran, Iran
Abstract:The activity of a lipase from a newly isolated Pseudomonas sp. was investigated in the presence of organic solvents and imidazolium chloride‐based ionic liquids (IL) such as BMIMCl] and HMIMCl]. The lipase activity in the presence of IL was higher compared to that in common organic solvents such as methanol and 2‐propanol. A possible explanation for the enzyme activation might be the structural changes induced in the protein in organic systems. Since IL quench the intensity of fluorescence emission, it was not possible to investigate the major factor that influences the enzyme behavior in these new organic salts. Furthermore, the enzyme exhibited excellent activity in buffer mixtures containing both organic solvent and IL. The stability of the lipase at 50°C was considerably increased in the presence of 20% BMIMCl] compared with the untreated lipase in aqueous medium. The light scattering method clearly showed that prevention of aggregation could be the reason for thermal stabilization at 50°C in reactions containing IL. Kinetic analysis of the enzyme in the presence of different concentrations of IL showed that the Km value increased from 0.45 mM in aqueous buffer to 2.4 mM in 50% v/v BMIMCl]/buffer. The increase in Km indicates that IL can significantly reduce the binding affinity of the substrate to the enzyme. Also, a linear correlation was observed between the BMIMCl] concentration and Vmax of the enzyme. As the concentration of BMIMCl] increased from 10 to 50% v/v, the Vmax value increased from 1.8 to 46 μM/min.
Keywords:Aggregation  Ionic liquids  Lipase  Organic solvents
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