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利用 Xplor®2 转化/表达平台在三种不同酵母中生产来自红色糖多孢菌的耐热醇脱氢酶。

Production of a thermostable alcohol dehydrogenase from Rhodococcus ruber in three different yeast species using the Xplor®2 transformation/expression platform.

机构信息

Leibniz-Institut für Pflanzengenetik und Kulturpflanzenforschung-IPK, Corrensstr. 3, 06466 Gatersleben, Germany.

出版信息

J Ind Microbiol Biotechnol. 2012 Sep;39(9):1385-96. doi: 10.1007/s10295-012-1134-9. Epub 2012 May 15.

Abstract

The Xplor®2 transformation/expression platform was employed for comparative assessment of three different yeast species as hosts for synthesis of a thermostable nicotinamide adenine dinucleotide (NAD⁺)-dependent medium-chain alcohol dehydrogenase from Rhodococcus ruber strain 219. Using yeast ribosomal DNA (rDNA) integrative expression cassettes (YRCs) and yeast integrative expression cassettes (YICs) equipped with a selection-marker module and one, two or four expression modules for transformation of auxotrophic Arxula adeninivorans, Hansenula polymorpha, and Saccharomyces cerevisiae strains, quantitative comparison of the yield of recombinant alcohol dehydrogenase RR-ADH6Hp in all three species was carried out. In all cases, the RR-ADH6H gene was expressed under the control of the strong constitutive A. adeninivorans-derived TEF1 promoter, which functions in all yeast species analyzed. Recombinant RR-ADH6Hp accumulated intracellularly in all strains tested. The best yields of active enzyme were obtained from A. adeninivorans, with S. cerevisiae producing intermediate amounts. Although H. polymorpha was the least efficient producer overall, the product obtained was most similar to the enzyme synthesized by R. ruber 219 with respect to its thermostability.

摘要

采用 Xplor®2 转化/表达平台,对三种不同酵母物种进行比较评估,作为宿主合成来自红球菌 219 的耐热烟酰胺腺嘌呤二核苷酸(NAD⁺)依赖性中链醇脱氢酶。使用酵母核糖体 DNA(rDNA)整合表达盒(YRC)和带有选择标记模块以及一个、两个或四个表达模块的酵母整合表达盒(YIC),转化营养缺陷型的 Arxula adeninivorans、汉逊酵母和酿酒酵母菌株,对三种酵母中重组醇脱氢酶 RR-ADH6Hp 的产量进行了定量比较。在所有情况下,RR-ADH6H 基因都在强组成型 A. adeninivorans 衍生的 TEF1 启动子的控制下表达,该启动子在所有分析的酵母物种中都起作用。重组 RR-ADH6Hp 在所有测试菌株中都在细胞内积累。从 A. adeninivorans 中获得了最高效的活性酶产量,而 S. cerevisiae 的产量则处于中间水平。尽管 H. polymorpha 总体上的生产效率最低,但从其热稳定性方面来看,所获得的产物与由 R. ruber 219 合成的酶最为相似。

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