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首页> 外文期刊>Applied Food Biotechnology >Overview of Catalytic Properties of Fungal Xylose Reductases and Molecular Engineering Approaches for Improved Xylose Utilisation in Yeast
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Overview of Catalytic Properties of Fungal Xylose Reductases and Molecular Engineering Approaches for Improved Xylose Utilisation in Yeast

机译:真菌木糖还原酶的催化性能概述和改善酵母中木糖利用的分子工程方法

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Background and Objective: Xylose reductases belong to the aldo-keto reductase family of enzymes, which catalyse the conversion of xylose to xylitol. Yeast xylose reductases have been intensively studied in the last two decades due to their significance in biotechnological production of ethanol and xylitol from xylose. Due to its GRAS status and pronounced tolerance to harsh conditions, Saccharomyces cerevisiae is the ideal organism for industrial production of both xylitol and ethanol. However, Saccharomyces cerevisiae is unable to use xylose as the sole carbon source due to the lack of xylose specific transporters and insufficient activity of metabolic pathways for xylose utilisation. The aim of this paper is to give an overview of attempts in increasing biotechnological potential of xylose reductases and to highlight the prospective of this application. Results and Conclusion: In order to create strains with improved xylose utilization, different approaches were attempted including simultaneous overexpression of xylitol dehydrogenase, xylose reductase and pentose phosphate pathway enzymes, heterologous expression of putative xylose transporters or heterologous expression of genes coding for enzymes included in the xylose metabolism, respectively. Furthermore, number of attempts to genetically modify different xylose reductases is increasing. This review presents current knowledge about yeast xylose reductases and the different approaches applied in order to improve xylose metabolism in yeast. Conflict of interest: The authors declare no conflict of interest.
机译:背景与目的:木糖还原酶属于醛糖酮还原酶家族,主要催化木糖向木糖醇的转化。由于酵母木糖还原酶在从木糖中生产乙醇和木糖醇的生物技术生产中的重要意义,因此在过去的二十年中进行了深入研究。由于其GRAS状态和对恶劣条件的明显耐受性,酿酒酵母是木糖醇和乙醇工业生产的理想生物。然而,由于缺乏木糖特异性转运蛋白和用于木糖利用的代谢途径的活性不足,所以酿酒酵母不能使用木糖作为唯一的碳源。本文的目的是概述增加木糖还原酶的生物技术潜力的尝试,并突出此应用的前景。结果与结论:为了产生具有更高木糖利用率的菌株,尝试了不同的方法,包括木糖醇脱氢酶,木糖还原酶和戊糖磷酸途径酶的同时过表达,推定的木糖转运蛋白的异源表达或编码该酶的基因的异源表达。木糖代谢分别。此外,遗传修饰不同木糖还原酶的尝试的数目正在增加。这篇综述介绍了有关酵母木糖还原酶的最新知识以及为改善酵母中木糖代谢而采用的不同方法。利益冲突:作者声明没有利益冲突。

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