Multipoint Immobilization of Invertase on Agarose: Stability and Kinetic Properties
نویسندگان
چکیده
Enzyme immobilization is a specific method for restricting the enzyme freedom of movement. There are strategies for the proteins multipoint immobilization by amine-terminal residues, lysine residues and carboxylic groups. In the present work, a commercial invertase of Saccharomyces cerevisiae underwent multipoint immobilization on glyoxyl-agarose, amineagarose and glutaraldehyde-agarose supports. Derivatives kinetic properties were determined and compared with the properties of the soluble enzyme. The copper influence on enzyme activity and its inhibition by fructose were also investigated. Amine-agarose exhibited activity closest to the soluble enzyme (93.3%). This same derivative maintained approximately 50% of initial activity when 800mM of fructose were added to the reaction medium. However, glutaraldehyde-agarose exhibited the best stability to temperature and pH and none of the derivatives lost inhibition by copper. Glyoxyl derivative exhibited the lowest Km (0.023mM) and amine derivative achieved the highest maximum velocity (1666.7 U/mg prot.).
منابع مشابه
Stabilization of penicillin G acylase from Escherichia coli: site-directed mutagenesis of the protein surface to increase multipoint covalent attachment.
Three mutations on the penicillin acylase surface (increasing the number of Lys in a defined area) were performed. They did not alter the enzyme's stability and kinetic properties; however, after immobilization on glyoxyl-agarose, the mutant enzyme showed improved stability under all tested conditions (e.g., pH 2.5 at 4 degrees C, pH 5 at 60 degrees C, pH 7 at 55 degrees C, or 60% dimethylforma...
متن کاملSimple and Rapid Immobilization of Firefly Luciferase on Functionalized Magnetic Nanoparticles; a Try to Improve Kinetic Properties and Stability
We expressed and purified a recombinant P. pyralis luciferase with N-terminal His-tags. The silanized Ni or Cu-loaded magnetic particles were prepared and used to assemble the His-tagged P. pyralis luciferase. This enzyme immobilized on functionalized magnetic nanoparticles (MNPs) via electrostatic interactions of His-tag with Ni2+/Cu2+ ions on the surface of MNPs using si...
متن کاملBiochemical Studies on the Immobilization of the Enzyme Invertase (EC.3.2.1.26) in Alginate Gel and its Kinetics
The biochemical properties of invertase entrapped in alginate gel were studied. The kinetic parameters were determined for immobilized and free invertase. The value of Michaelis constant Km of the immobilized invertase (139.19 mM) was greater than that of the free invertase (93.19 mM), whereas, Vmax was smaller for the immobilized enzyme. Immobilization impressively improved the thermal and sto...
متن کاملThe immobilization of laccase enzyme from Trametes versicolor on the surface of porous zinc oxide nanoparticles and studying features of the immobilized enzyme
The laccase enzyme is the largest group of Oxidoreductase enzymes and is capable of oxidizing a wide range of organic substrates to water along with molecular oxygen resuscitation. ZnO nanoparticles are known for their specific properties such as chemical stability, high electrochemical coupling rates, and wide range of absorption of radiation as multifunctional compounds. In this study, ZnO po...
متن کاملThe immobilization of laccase enzyme from Trametes versicolor on the surface of porous zinc oxide nanoparticles and studying features of the immobilized enzyme
The laccase enzyme is the largest group of Oxidoreductase enzymes and is capable of oxidizing a wide range of organic substrates to water along with molecular oxygen resuscitation. ZnO nanoparticles are known for their specific properties such as chemical stability, high electrochemical coupling rates, and wide range of absorption of radiation as multifunctional compounds. In this study, ZnO po...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره شماره
صفحات -
تاریخ انتشار 2008