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首页> 外文期刊>Biotechnology Journal: Healthcare,Nutrition,Technology >Pentose Metabolism in Saccharomyces cerevisiae: The Need to Engineer Global Regulatory Systems
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Pentose Metabolism in Saccharomyces cerevisiae: The Need to Engineer Global Regulatory Systems

机译:葡萄糖新陈代谢酿酒酵母酿酒座:需要工程师全球监管系统

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摘要

Extending the host substrate range of industrially relevant microbes, such as Saccharomyces cerevisiae, has been a highly-active area of research since the conception of metabolic engineering. Yet, rational strategies that enable non-native substrate utilization in this yeast without the need for combinatorial and/or evolutionary techniques are underdeveloped. Herein, this review focuses on pentose metabolism in S. cerevisiae as a case study to highlight the challenges in this field. In the last three decades, work has focused on expressing exogenous pentose metabolizing enzymes as well as endogenous enzymes for effective pentose assimilation, growth, and biofuel production. The engineering strategies that are employed for pentose assimilation in this yeast are reviewed, and compared with metabolism and regulation of native sugar, galactose. In the case of galactose metabolism, multiple signals regulate and aid growth in the presence of the sugar. However, for pentoses that are non-native, it is unclear if similar growth and regulatory signals are activated. Such a comparative analysis aids in identifying missing links in xylose and arabinose utilization. While research on pentose metabolism have mostly concentrated on pathway level optimization, recent transcriptomics analyses highlight the need to consider more global regulatory, structural, and signaling components.
机译:自代谢工程概念的概念以来,延伸了诸如酿酒酵母的工业相关微生物的宿主基材范围是一种高度活跃的研究领域。然而,在不需要组合和/或进化技术的情况下,在该酵母中能够在这种酵母中能够实现非天然底物利用的Rational策略是欠发达的。在此,本综述侧重于酿酒酵母在戊糖代谢作为案例研究,以突出该领域的挑战。在过去的三十年中,工作致力于表达外源性戊糖代谢酶以及内源性酶,以获得有效的pentose同化,生长和生物燃料生产。综述了该酵母在该酵母中使用的工程策略,并与新生糖,半乳糖的代谢和调节相比。在半乳糖新陈代谢的情况下,多个信号调节和辅助糖的生长。然而,对于非本地的戊类,如果激活了类似的生长和调节信号,则不清楚。这种比较分析助剂鉴定木糖和阿拉伯糖利用中缺失的联系。虽然研究戊酱新陈代谢主要集中在途径水平优化上,但最近的转录组织分析突出了需要考虑更多全球监管,结构和信号传导组件的必要性。

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