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Immobilization of Hansenula polymorpha Alcohol Oxidase for Alcohol Biosensor Applications

机译:固定多形汉逊酵母乙醇氧化酶在酒精生物传感器中的应用

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摘要

Alcohol oxidase catalyzes the oxidation of short lines alcohol to aldehyde. In this study, alcohol oxidase from Hansenula polymorpha (HpAOD) was induced by addition of 0.5% methanol as the carbon source and purified to electrophoretic homogeneity by column chromatographies. The purified Hp AOD was immobilized with DEAE-cellu-lose particles and its biochemical properties were compared with those of free enzyme. The substrate specificity and the optimum pH of immobilized enzyme were similar to those of free enzyme. On the other hand, the K_m values of free and immobilized enzymes for ethanol were 6.66 and 14.65 mM, respectively. The optimum temperature for free enzyme was 50°C, whereas that for immobilized enzyme was 65°C. Immobilized enzyme showed high stability against long storage. Immobilized enzyme was also tested for the enzymatic determination of ethanol by the colorimetric method. We detected 1 mg/liter ethanol (1 x 10~(-4)% ethanol) by 2,6- dichloroindophenol system. Therefore, the present study demonstrated that immobilized HpAOD has high substrate specificity toward ethanol and storage stability, which may be of considerable interest for alcohol biosensor and industrial application.
机译:醇氧化酶催化短线醇氧化为醛。在这项研究中,通过添加0.5%甲醇作为碳源诱导多形汉逊酵母(HpAOD)的醇氧化酶,并通过柱色谱法纯化至电泳均一。将纯化的Hp AOD固定在DEAE纤维素颗粒上,并将其生化特性与游离酶进行比较。固定化酶的底物特异性和最适pH与游离酶相似。另一方面,游离和固定化乙醇酶的K_m值分别为6.66和14.65 mM。游离酶的最佳温度为50℃,而固定化酶的最佳温度为65℃。固定化酶显示出高稳定性,可长时间保存。还通过比色法测试了固定化酶对乙醇的酶促测定。通过2,6-二氯吲哚酚系统检测到1 mg / L乙醇(1 x 10〜(-4)%乙醇)。因此,本研究表明,固定化的HpAOD具有较高的对乙醇的底物特异性和储存稳定性,这对于酒精生物传感器和工业应用可能具有相当大的意义。

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