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Physiological effects of over-expressing compartment-specific components of the protein folding machinery in xylose-fermenting Saccharomyces cerevisiae

机译:过表达木糖发酵酿酒酵母中蛋白质折叠机制的特定于隔室的成分的生理效应

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摘要

BackgroundEfficient utilization of both glucose and xylose is necessary for a competitive ethanol production from lignocellulosic materials. Although many advances have been made in the development of xylose-fermenting strains of Saccharomyces cerevisiae, the productivity remains much lower compared to glucose. Previous transcriptional analyses of recombinant xylose-fermenting strains have mainly focused on central carbon metabolism. Very little attention has been given to other fundamental cellular processes such as the folding of proteins. Analysis of previously measured transcript levels in a recombinant XR/XDH-strain showed a wide down-regulation of genes targeted by the unfolded protein response during xylose fermentation. Under anaerobic conditions the folding of proteins is directly connected with fumarate metabolism and requires two essential enzymes: FADH2-dependent fumarate reductase (FR) and Ero1p. In this study we tested whether these enzymes impair the protein folding process causing the very slow growth of recombinant yeast strains on xylose under anaerobic conditions.
机译:背景技术从木质纤维素材料中竞争性生产乙醇必须有效利用葡萄糖和木糖。尽管在酿酒酵母的木糖发酵菌株的开发中已经取得了许多进展,但是与葡萄糖相比,生产率仍然低得多。重组木糖发酵菌株的先前转录分析主要集中在中央碳代谢上。其他基本的细胞过程,如蛋白质折叠,却很少受到关注。重组XR / XDH菌株中以前测得的转录水平的分析表明,木糖发酵过程中未折叠的蛋白质反应靶向的基因广泛下调。在厌氧条件下,蛋白质的折叠与富马酸酯的代谢直接相关,并且需要两种必需的酶:依赖FADH2的富马酸酯还原酶(FR)和Ero1p。在这项研究中,我们测试了这些酶是否会破坏蛋白质折叠过程,从而导致重组酵母菌株在厌氧条件下在木糖上的生长非常缓慢。

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