Co-crosslinking immobilization method of penicillin G acylase

An acylase, penicillin technology, applied in immobilized enzymes, biochemical equipment and methods, immobilized on/in organic carriers, etc., can solve the problem of high reaction activity, excessive cross-linking of enzymes, and inability to fully utilize enzyme catalysis efficiency and other issues, to achieve the effect of improving catalytic reaction activity and improving the microenvironment

Active Publication Date: 2020-02-07
NINGBO UNIV
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  • Abstract
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  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The most commonly used cross-linking agent is water-soluble glutaraldehyde, which has high reactivity and is difficult to control the dosage. It is easy to cause excessive cross-linking of the enzyme and cause a great loss of enzyme activity. In addition, the traditional cross-linking method often It is necessary to precipitate and aggregate enzyme molecules before cross-linking, which will not only cause waste of enzymes, but also block mass transfer channels, and cannot fully exert the catalytic efficiency of enzymes

Method used

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  • Co-crosslinking immobilization method of penicillin G acylase
  • Co-crosslinking immobilization method of penicillin G acylase
  • Co-crosslinking immobilization method of penicillin G acylase

Examples

Experimental program
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Embodiment Construction

[0015] Enzyme immobilization

[0016] 1) Bisphenol A epoxy resin (brand name is E-51, epoxy value is 0.51, number average molecular weight is 392), three kinds of components of methanol and diethylenetriamine are mixed according to the mass ratio of 2: 2: 1, Stir and react in the range of 25-35°C for 4-5 hours, pour the mixture into water, wash the precipitate repeatedly with water to remove methanol and a small amount of amine, then put it in a vacuum oven and dry it at room temperature to obtain an aminated epoxy resin;

[0017] 2) Add epoxy resin amides and β-cyclodextrin into water at a molar ratio of 1:2.1 to 1:2.3, heat and stir until all epoxy resin amides are converted into molecular complexes and dissolved in water, and keep the The total mass concentration of the aqueous solution is in the range of 5 to 6wt.%.

[0018] 3) dissolving the penicillin G acylase in a sodium phosphate buffer solution with pH=7.5, and keeping the concentration of the enzyme in the range of...

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Abstract

The invention discloses a co-crosslinking immobilization method of penicillin G acylase. According to the co-crosslinking immobilization method of the penicillin G acylase, oil-soluble butanediol diacrylate is used as a crosslinking agent; penicillin G acylase containing amino groups, as well as a supramolecular complex formed by aminated epoxy resin and beta-cyclodextrin are used as reactants inan aqueous phase; and then, through a Michael addition reaction of the amino groups with double bonds, co-crosslinking polymerization is conducted at a relatively low temperature so as to prepare immobilized penicillin G acylase with different loading capacity. With crosslinking degree controlled, dispersivity enhanced and internal mass transfer microenvironment improved, the immobilized penicillin G acylase has relatively high catalytic activity that relative activity of the immobilized penicillin G acylase can be up to 91% of that of free enzyme when the loading capacity is 37 milligrams ofthe immobilized penicillin G acylase per gram of carrier.

Description

technical field [0001] The invention relates to the technical field of immobilized enzyme biocatalysis, in particular to a method for co-crosslinking and immobilizing penicillin G acylase. The novel immobilized penicillin G acylase can be specially used as a specific catalyst for various reactions. Background technique [0002] Penicillin G acylase (EC 3.5.1.11), also known as penicillin aminohydrolase, belongs to the class of aminohydrolase, which can specifically hydrolyze amide bonds, and is an important industrial enzyme. Penicillin G acylase belongs to globulin with larger molecular weight, and its three-dimensional structure consists of a large subunit containing a catalytic site and a small subunit containing a side chain binding site (by hydrogen bonding. The isoelectric point of the enzyme is about In 6.5~6.7. Penicillin G acylase is composed of α and β subunits. When α or β subunit exists alone, it has no enzymatic activity, and it is only active when the two are c...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C12N11/10C12N11/089
CPCC12N11/10C12N11/08C12N9/84C12Y305/01011Y02P20/50
Inventor 吴嘉沁张瑞丰李艳肖通虎龙能兵
Owner NINGBO UNIV
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