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Reduction of xylose to xylitol catalyzed by glucose-fructose oxidoreductase from Zymomonas mobilis

机译:运动发酵单胞菌葡萄糖-果糖氧化还原酶催化的木糖还原为木糖醇

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摘要

Genetic improvements of Zymomonas mobilis for pentose utilization have a huge potential in fuel ethanol production. The production of xylitol and the resulting growth inhibition by xylitol phosphate have been considered to be one of the important factors affecting the rates and yields from xylose metabolism by the recombinant Z. mobilis, but the mechanism of xylitol formation is largely unknown. Here, we reported that glucose-fructose oxidoreductase (GFOR), a periplasmic enzyme responsible for sorbitol production, catalyzed the reduction of xylose to xylitol in vitro, operating via a ping-pong mechanism similar to that in the formation of sorbitol. However, the specific activity of GFOR for sorbitol was higher than that for xylitol (68.39 vs. 1.102 mu mol min(-1) mg(-1)), and an apparent substrate-induced positive cooperativity occurred during the catalyzed formation of xylitol, with the Hill coefficient being about 2. While a change of the potential acid-base catalyst Tyr269 to Phe almost completely abolished the activity toward xylose as well as fructose, mutant S116D, which has been shown to lose tight cofactor binding, displayed an even slower catalytic process against xylose.
机译:运动发酵单胞菌对戊糖利用的遗传改良在燃料乙醇生产中具有巨大潜力。木糖醇的产生和由此产生的木糖醇磷酸酯的生长抑制被认为是影响重组运动发酵单胞菌从木糖代谢的速率和产量的重要因素之一,但是木糖醇形成的机理尚不清楚。在这里,我们报道了葡萄糖果糖氧化还原酶(GFOR),一种负责山梨糖醇生产的周质酶,在体外通过类似于形成山梨糖醇的乒乓机制催化了木糖向木糖醇的还原。然而,GFOR对山梨糖醇的比活性高于对木糖醇的比活性(68.39对1.102 mu mol min(-1)mg(-1)),并且在木糖醇催化形成过程中出现了明显的底物诱导的正协同性,希尔系数约为2。虽然将潜在的酸碱催化剂Tyr269更改为Phe几乎完全消除了对木糖和果糖的活性,但突变体S116D(显示出失去紧密的辅因子结合)显示出甚至更慢的活性。木糖催化过程。

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