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Investigation of limiting metabolic steps in the utilization of xylose by recombinant Saccharomyces cerevisiae using metabolic engineering

机译:利用代谢工程技术研究重组酿酒酵母利用木糖的限制代谢步骤

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A Saccharomyces cerevisiae screening strain was designed by combining multiple genetic modifications known to improve xylose utilization with the primary objective of enhancing xylose growth and fermentation in xylose isomerase (XI)-expressing strains. Strain TMB 3045 was obtained by expressing the XI gene from Thermus thermophilus in a strain in which the GRE3 gene coding for aldose reductase was deleted, and the genes encoding xylulokinase (XK) and the enzymes of the non-oxidative pentose phosphate pathway (PPP) [transaldolase (TAL), transketolase (TKL), ribose 5-phosphate ketol-isomerase (RKI) and ribulose 5-phosphate epimerase (RPE)] were overexpressed. A xylose-growing and fermenting strain (TMB 3050) was derived from TMB 3045 by repeated cultivation on xylose medium. Despite its low XI activity, TMB 3050 was capable of aerobic xylose growth and anaerobic ethanol production at 30 degrees C. The aerobic xylose growth rate reached 0.17 l/h when XI was replaced with xylose reductase (XR) and xylitol dehydrogenase (XDH) genes expressed from a multicopy plasmid, demonstrating that the screening system was functional. Xylose growth had not previously been detected in strains in which the PPP genes were not overexpressed or when overexpressing the PPP genes but having XR and XDH genes chromosomally integrated. This demonstrates the necessity to simultaneously increase the conversion of xylose to xylulose and the metabolic steps downstream of xylulose for efficient xylose utilization in S. cerevisiae.
机译:通过结合已知改善木糖利用的多种遗传修饰与增强木糖异构酶(XI)表达菌株中木糖生长和发酵的主要目的,设计了酿酒酵母筛选菌株。通过从嗜热栖热菌中表达XI基因的菌株获得TMB 3045菌株,该菌株中缺失编码醛糖还原酶的GRE3基因,并且编码木酮糖激酶(XK)的基因和非氧化戊糖磷酸途径(PPP)的酶。 [转醛醇酶(TAL),转酮醇酶(TKL),核糖5-磷酸酮醇异构酶(RKI)和核糖5-磷酸差向异构酶(RPE)]过表达。通过在木糖培养基上重复培养,从TMB 3045衍生出木糖生长和发酵菌株(TMB 3050)。尽管其XI活性低,但TMB 3050仍能够在30摄氏度下进行好氧木糖生长和厌氧乙醇生产。当用木糖还原酶(XR)和木糖醇脱氢酶(XDH)基因替代XI时,好氧木糖的生长速度达到0.17 l / h。由多拷贝质粒表达,表明筛选系统是有功能的。以前未在PPP基因未过表达或过表达PPP基因但具有XR和XDH基因染色体整合的菌株中未检测到木糖生长。这表明必须同时增加木糖到木酮糖的转化以及木糖下游的代谢步骤,以在酿酒酵母中有效地利用木糖。

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