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将α-淀粉酶固定在聚乙烯醇涂层的全氟聚合物载体上,用于酶反应器。

Immobilization of alpha-amylase on poly(vinyl alcohol)-coated perfluoropolymer supports for use in enzyme reactors.

作者信息

Yang Y, Chase H A

机构信息

Department of Chemical Engineering, Pembroke Street, Cambridge CB2 3RA, U.K.

出版信息

Biotechnol Appl Biochem. 1998 Oct;28(2):145-54.

PMID:9756465
Abstract

The suitability and potential for the use of poly(vinyl alcohol) (PVA)-coated solid perfluoropolymers in immobilized-enzyme engineering have been evaluated by using alpha-amylase from Bacillus licheniformis for the hydrolysis of starch. alpha-Amylase was covalently immobilized on PVA-coated poly(tetrafluoroethylene-hexafluoropropylene) (PVA-FEP) by covalent coupling with the use of p-beta-sulphate-(ethyl sulphonide)-aniline, 2,4,6-trichloro-1,3,5-triazine, 1.1'-carbonyldi-imidazole and 2,2, 2-trifluoroethanesulphonyl chloride activation procedures, and also for comparison with cyanogen bromide-activated Sepharose 4B. In all cases, immobilization greatly improved the thermostability of the alpha-amylase and its resistance to inactivation by 6 M urea. Also the enhancements of enzymic activities with increased temperature were higher for the immobilized enzymes than for the soluble enzyme, and the immobilized alpha-amylases were well suited to the continuous hydrolysis of starch conducted at elevated temperatures. Although the specific activities of the enzymes immobilized on PVA-FEP were lower than for that immobilized to Sepharose 4B, these novel supports showed far superior strength. The enzymes immobilized on PVA-FEP were able to be readily recovered from stirred batch bioreactors for repeated reuse, whereas the enzymes immobilized to Sepharose were fractured and fragmented under similar conditions of stirring. A conventional fixed-bed bioreactor was found to be unsuitable for continuous starch hydrolysis owing to an unacceptable build-up of pressure drop across the bed. However, an expanded bed reactor containing alpha-amylase immobilized on solid PVA-coated perfluorocarbon showed great potential for the continuous hydrolysis of starch. Only 20% of the enzyme activity was lost after use for 3 weeks at 72 degrees C. It is concluded that PVA-coated solid perfluorocarbon is a highly promising support for use in immobilized enzyme engineering.

摘要

通过使用地衣芽孢杆菌的α-淀粉酶水解淀粉,评估了聚乙烯醇(PVA)涂层的固体全氟聚合物在固定化酶工程中的适用性和潜力。通过使用对-β-硫酸盐-(乙硫醚)-苯胺、2,4,6-三氯-1,3,5-三嗪、1,1'-羰基二咪唑和2,2,2-三氟乙烷磺酰氯活化程序进行共价偶联,将α-淀粉酶共价固定在PVA涂层的聚(四氟乙烯-六氟丙烯)(PVA-FEP)上,并且还与溴化氰活化的琼脂糖4B进行比较。在所有情况下,固定化极大地提高了α-淀粉酶的热稳定性及其对6M尿素失活的抗性。此外,固定化酶随温度升高的酶活性增强高于可溶性酶,并且固定化的α-淀粉酶非常适合在高温下进行淀粉的连续水解。尽管固定在PVA-FEP上的酶的比活性低于固定在琼脂糖4B上的酶,但这些新型载体显示出远 superior strength。固定在PVA-FEP上的酶能够很容易地从搅拌分批生物反应器中回收以重复使用,而固定在琼脂糖上的酶在类似的搅拌条件下会破碎和碎片化。发现传统的固定床生物反应器由于床层上不可接受的压降积累而不适用于连续淀粉水解。然而,含有固定在固体PVA涂层全氟碳上的α-淀粉酶的膨胀床反应器显示出淀粉连续水解的巨大潜力。在72℃下使用3周后,仅损失了20%的酶活性。得出的结论是,PVA涂层的固体全氟碳是用于固定化酶工程的极有前途的载体。

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