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A genetic screen for increasing metabolic flux in the isoprenoid pathway of Saccharomyces cerevisiae : Isolation of SPT15 mutants using the screen

机译:用于增加酿酒酵母等异戊二烯途径中代谢通量的遗传筛查:使用筛选的SPT15突变体的分离

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摘要

A genetic screen to identify mutants that can increase flux in the isoprenoid pathway of yeast has been lacking. We describe a carotenoid-based visual screen built with the core carotenogenic enzymes from the red yeast Rhodosporidium toruloides. Enzymes from this yeast displayed the required, higher capacity in the carotenoid pathway. The development also included the identification of the metabolic bottlenecks, primarily phytoene dehydrogenase, that was subjected to a directed evolution strategy to yield more active mutants. To further limit phytoene pools, a less efficient version of GGPP synthase was employed. The screen was validated with a known flux increasing gene, tHMG1. New mutants in the TATA binding protein SPT15 were isolated using this screen that increased the yield of carotenoids, and an alternate isoprenoid, α-Farnesene confirming increase in overall flux. The findings indicate the presence of previously unknown links to the isoprenoid pathway that can be uncovered using this screen. Keywords: Metabolic engineering, Carotenoids, Isoprenoids, α-Farnesene, Rhodosporidium toruloides, SPT15
机译:缺乏鉴定可以增加酵母异戊二烯途径中的突变体的遗传筛网。我们描述了一种基于类胡萝卜素的视觉筛网,其具有来自红色酵母罗狄斯孢子座菱形的核心癌源酶。来自该酵母的酶在类胡萝卜素途径中显示出所需的,更高的容量。该开发还包括鉴定代谢瓶颈,主要是植物脱氢酶,其进行定向的演化策略以产生更活跃的突变体。为了进一步限制植物池,采用较低的GGPP合酶形式。用已知的助焊剂增加基因,Thmg1验证筛网。使用该筛选分离塔塔结合蛋白SPT15中的新突变体,该筛选增加了类胡萝卜素的产量,以及替代等异戊二烯,α-法呢烯确认总通量增加。结果表明,使用该屏幕可以未发现的异戊二烯途径存在先前未知的链接。关键词:代谢工程,类胡萝卜素,等异戊二烯,α-法呢,罗达孢子素,SPT15

著录项

  • 作者

    M. Wadhwa; A.K. Bachhawat;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 eng
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