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来自泡盛曲霉的重组酸性稳定外切菊粉酶的高水平生产。

High level production of a recombinant acid stable exoinulinase from Aspergillus kawachii.

作者信息

Chesini Mariana, Wagner Evelyn, Baruque Diego J, Vita Carolina E, Cavalitto Sebastián F, Ghiringhelli Pablo D, Rojas Natalia L

机构信息

Centro de Investigación y Desarrollo en Fermentaciones Industriales, Calle 50 Nº 227, CONICET, La Plata 1900, Argentina.

Universidad Nacional de Quilmes, CONICET, Departamento de Ciencia y Tecnología, IMBA, Roque Sáenz Peña 352, Quilmes 1876, Argentina.

出版信息

Protein Expr Purif. 2018 Jul;147:29-37. doi: 10.1016/j.pep.2018.02.007. Epub 2018 Feb 15.

Abstract

Exoinulinases-enzymes extensively studied in recent decades because of their industrial applications-need to be produced in suitable quantities in order to meet production demands. We describe here the production of an acid-stable recombinant inulinase from Aspergillus kawachii in the Pichia pastoris system and the recombinant enzyme's biochemical characteristics and potential application to industrial processes. After an appropriate cloning strategy, this genetically engineered inulinase was successfully overproduced in fed-batch fermentations, reaching up to 840 U/ml after a 72-h cultivation. The protein, purified to homogeneity by chromatographic techniques, was obtained at a 42% yield. The following biochemical characteristics were determined: the enzyme had an optimal pH of 3, was stable for at least 3 h at 55 °C, and was inhibited in catalytic activity almost completely by Hg. The respective K and V for the recombinant inulinase with inulin as substrate were 1.35 mM and 2673 μmol/min/mg. The recombinant enzyme is an exoinulinase but also possesses synthetic activity (i. e., fructosyl transferase). The high level of production of this recombinant plus its relevant biochemical properties would argue that the process presented here is a possible recourse for industrial applications in carbohydrate processing.

摘要

外切菊粉酶——由于其工业应用在近几十年得到广泛研究——需要大量生产以满足生产需求。我们在此描述了在毕赤酵母系统中生产来自泡盛曲霉的一种酸稳定重组菊粉酶,以及该重组酶的生化特性和在工业过程中的潜在应用。经过适当的克隆策略,这种基因工程菊粉酶在补料分批发酵中成功过量表达,培养72小时后达到高达840 U/ml。通过色谱技术纯化至同质的蛋白质,产率为42%。测定了以下生化特性:该酶的最适pH为3,在55°C下至少稳定3小时,并且其催化活性几乎完全被Hg抑制。以菊粉为底物时,重组菊粉酶的K和V分别为1.35 mM和2673 μmol/min/mg。该重组酶是一种外切菊粉酶,但也具有合成活性(即果糖基转移酶)。这种重组酶的高产量及其相关生化特性表明,这里介绍的工艺可能是碳水化合物加工工业应用的一种选择。

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