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首页> 外文期刊>Applied and Environmental Microbiology >Molecular Analysis of a Saccharomyces cerevisiae Mutant with Improved Ability To Utilize Xylose Shows Enhanced Expression of Proteins Involved in Transport, Initial Xylose Metabolism, and the Pentose Phosphate Pathway
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Molecular Analysis of a Saccharomyces cerevisiae Mutant with Improved Ability To Utilize Xylose Shows Enhanced Expression of Proteins Involved in Transport, Initial Xylose Metabolism, and the Pentose Phosphate Pathway

机译:具有改进的利用木糖能力的啤酒酵母突变体的分子分析显示参与运输,初始木糖代谢和磷酸戊糖途径的蛋白质表达增强。

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Differences between the recombinant xylose-utilizing Saccharomyces cerevisiae strain TMB 3399 and the mutant strain TMB 3400, derived from TMB 3399 and displaying improved ability to utilize xylose, were investigated by using genome-wide expression analysis, physiological characterization, and biochemical assays. Samples for analysis were withdrawn from chemostat cultures. The characteristics of S. cerevisiae TMB 3399 and TMB 3400 grown on glucose and on a mixture of glucose and xylose, as well as of S. cerevisiae TMB 3400 grown on only xylose, were investigated. The strains were cultivated under chemostat conditions at a dilution rate of 0.1 h?1, with feeds consisting of a defined mineral medium supplemented with 10 g of glucose liter?1, 10 g of glucose plus 10 g of xylose liter?1 or, for S. cerevisiae TMB 3400, 20 g of xylose liter?1. S. cerevisiae TMB 3400 consumed 31% more xylose of a feed containing both glucose and xylose than S. cerevisiae TMB 3399. The biomass yields for S. cerevisiae TMB 3400 were 0.46 g of biomass g of consumed carbohydrate?1 on glucose and 0.43 g of biomass g of consumed carbohydrate?1 on xylose. A Ks value of 33 mM for xylose was obtained for S. cerevisiae TMB 3400. In general, the percentage error was S. cerevisiae TMB 3400 than in S. cerevisiae TMB 3399 for (i) HXT5, encoding a hexose transporter; (ii) XKS1, encoding xylulokinase, an enzyme involved in one of the initial steps of xylose utilization; and (iii) SOL3, GND1, TAL1, and TKL1, encoding enzymes in the pentose phosphate pathway. In addition, the transcriptional regulators encoded by YCR020C, YBR083W, and YPR199C were expressed differently in the two strains. Xylose utilization was, however, not affected in strains in which YCR020C was overexpressed or deleted. The higher expression of XKS1 in S. cerevisiae TMB 3400 than in TMB 3399 correlated with higher specific xylulokinase activity in the cell extracts. The specific activity of xylose reductase and xylitol dehydrogenase was also higher for S. cerevisiae TMB 3400 than for TMB 3399, both on glucose and on the mixture of glucose and xylose.
机译:通过使用全基因组表达分析,生理学表征和生化分析,研究了利用木糖的酿酒酵母菌株TMB 3399和衍生自TMB 3399的突变菌株TMB 3400之间的差异,这些菌株显示出利用木糖的能力提高。从化学恒温器培养物中取出用于分析的样品。研究了在葡萄糖以及在葡萄糖和木糖的混合物上生长的啤酒酵母TMB 3399和TMB 3400,以及仅在木糖上生长的啤酒酵母TMB 3400的特性。菌株在恒化条件下以0.1 h?1的稀释率进行培养,饲料中加入确定的矿物质培养基,辅以10 g葡萄糖升l1、10 g葡萄糖和10 g木糖升l 1,或者啤酒酵母TMB 3400,木糖20克升1。啤酒酵母TMB 3400消耗的葡萄糖和木糖含量均比啤酒酵母TMB 3399高31%。啤酒酵母TMB 3400的生物质产量为0.46 g生物质g消耗的碳水化合物碳水化合物(葡萄糖)1和0.43 g生物量g消耗的木糖上的碳水化合物?1。酿酒酵母TMB 3400的木糖Ks值为33 mM。 (ii)XKS1,编码木酮糖激酶,一种参与木糖利用的初始步骤之一的酶; (iii)SOL3,GND1,TAL1和TKL1,它们编码磷酸戊糖途径中的酶。另外,由YCR020C,YBR083W和YPR199C编码的转录调节子在两种菌株中表达不同。但是,在YCR020C过表达或缺失的菌株中,木糖的利用不受影响。 XKS1在酿酒酵母TMB 3400中比在TMB 3399中更高的表达与细胞提取物中更高的比木糖激酶活性有关。对于酿酒酵母TMB 3400,木糖还原酶和木糖醇脱氢酶的比活性在葡萄糖以及在葡萄糖和木糖的混合物上都比TMB 3399高。

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