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将来自奥克西坦青霉的His标签重组木聚糖酶固定在镍螯合型Eupergit C上以提高家禽饲料的消化率。

Immobilization of His-tagged recombinant xylanase from Penicillium occitanis on nickel-chelate Eupergit C for increasing digestibility of poultry feed.

作者信息

Driss Dorra, Driss Zied, Chaari Fatma, Chaabouni Semia Ellouz

机构信息

Unité Enzymes et Bioconversion; Ecole Nationale d'Ingénieurs de Sfax; Université de Sfax; Sfax, Tunisia.

Laboratory of Electro-Mechanic Systems (LASEM); National Engineering School of Sfax (ENIS); University of Sfax; Sfax, Tunisia.

出版信息

Bioengineered. 2014 Jul-Aug;5(4):274-9. doi: 10.4161/bioe.29596. Epub 2014 Jun 16.

Abstract

Recombinant xylanase 2 from Penicillium occitanis expressed with an His-tag in Pichia pastoris, termed PoXyn2, was immobilized on nickel-chelate Eupergit C by covalent coupling reaction with a high immobilization yield up to 93.49%. Characterization of the immobilized PoXyn2 was further evaluated. The optimum pH was not affected by immobilization, but the immobilized PoXyn2 exhibited more acidic and large optimum pH range (pH 2.0-4.0) than that of the free PoXyn2 (pH 3.0). The free PoXyn2 had an optimum temperature of 50 °C, whereas that of the immobilized enzyme was shifted to 65 °C. Immobilization increased both pH stability and thermostability when compared with the free enzyme. Thermodynamically, increase in enthalpy and free energy change after covalent immobilization could be credited to the enhanced stability. Immobilized xylanase could be reused for 10 consecutive cycles retaining 60% of its initial activity. It was found to be effective in releasing reducing sugar from poultry feed. Immobilization on Eupergit C is important due to its mechanical resistance at high pH and temperature. Hence, considerable stability and reusability of bound enzyme may be advantageous for its industrial application.

摘要

来自奥克西坦青霉的重组木聚糖酶2(在毕赤酵母中表达时带有His标签,称为PoXyn2)通过共价偶联反应固定在镍螯合型Eupergit C上,固定化产率高达93.49%。对固定化的PoXyn2进行了进一步表征。固定化不影响最佳pH值,但固定化的PoXyn2比游离的PoXyn2表现出更酸性且更宽的最佳pH范围(pH 2.0 - 4.0),游离的PoXyn2最佳pH值为3.0。游离的PoXyn2最佳温度为50℃,而固定化酶的最佳温度变为65℃。与游离酶相比,固定化提高了pH稳定性和热稳定性。从热力学角度来看,共价固定后焓和自由能变化的增加可归因于稳定性的增强。固定化木聚糖酶可连续重复使用10个循环,保留其初始活性的60%。发现它在从家禽饲料中释放还原糖方面有效。由于其在高pH和温度下的机械抗性,固定在Eupergit C上很重要。因此,结合酶具有相当的稳定性和可重复使用性,这可能对其工业应用有利。

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