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首页> 外文期刊>Biochemical and Biophysical Research Communications >A novel strictly NADPH-dependent Pichia stipitis xylose reductase constructed by site-directed mutagenesis.
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A novel strictly NADPH-dependent Pichia stipitis xylose reductase constructed by site-directed mutagenesis.

机译:通过定点诱变构建的新型严格NADPH依赖性毕赤酵母木糖还原酶。

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Xylose reductase (XR) and xylitol dehydrogenase (XDH) are the key enzymes for xylose fermentation and have been widely used for construction of a recombinant xylose fermenting yeast. The effective recycling of cofactors between XR and XDH has been thought to be important to achieve effective xylose fermentation. Efforts to alter the coenzyme specificity of XR and HDX by site-directed mutagenesis have been widely made for improvement of efficiency of xylose fermentation. We previously succeeded by protein engineering to improve ethanol production by reversing XDH dependency from NAD(+) to NADP(+). In this study, we applied protein engineering to construct a novel strictly NADPH-dependent XR from Pichia stipitis by site-directed mutagenesis, in order to recycle NADPH between XR and XDH effectively. One double mutant, E223A/S271A showing strict NADPH dependency with 106% activity of wild-type was generated. A second double mutant, E223D/S271A, showed a 1.27-fold increased activity compared to the wild-type XR with NADPH and almost negligible activity with NADH.
机译:木糖还原酶(XR)和木糖醇脱氢酶(XDH)是木糖发酵的关键酶,已被广泛用于构建重组木糖发酵酵母。 XR和XDH之间辅助因子的有效循环被认为对实现有效的木糖发酵很重要。为了提高木糖发酵效率,已经广泛进行了通过定点诱变来改变XR和HDX的辅酶特异性的努力。我们以前通过蛋白质工程成功地通过将XDH依赖性从NAD(+)转变为NADP(+)来提高乙醇产量。在这项研究中,我们应用蛋白质工程技术通过定点诱变从毕赤酵母中构建了一个新的严格依赖NADPH的XR,以有效地在XR和XDH之间循环利用NADPH。产生了一个双重突变体E223A / S271A,其显示出严格的NADPH依赖性和106%的野生型活性。与具有NADPH的野生型XR相比,第二个双突变体E223D / S271A的活性提高了1.27倍,而与NADH的活性几乎可以忽略不计。

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