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首页> 外文期刊>Microbiology >Ethanol production from xylose by recombinant Saccharomyces cerevisiae expressing protein-engineered NADH-preferring xylose reductase from Pichia stipitis
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Ethanol production from xylose by recombinant Saccharomyces cerevisiae expressing protein-engineered NADH-preferring xylose reductase from Pichia stipitis

机译:来自木糖的乙醇生产通过重组酿酒酵母酿酒酵母表达蛋白质工程的NADH-偏美的木糖还原酶来自毕赤炎

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A recombinant Saccharomyces cerevisiae strain transformed with xylose reductase (XR) and xylitol dehydrogenase (XDH) genes from Pichia stipitis (PsXR and PsXDH, respectively) has the ability to convert xylose to ethanol together with the unfavourable excretion of xylitol, which may be due to intercellular redox imbalance caused by the different coenzyme specificity between NADPH-preferring XR and NAD+-dependent XDH. In this study, we focused on the effect(s) of mutated NADH-preferring PsXR in fermentation. The R276H and K270R/N272D mutants were improved 52- and 146-fold, respectively, in the ratio of NADH/NADPH in catalytic efficiency [(kcat/Km with NADH)/(kcat/Km with NADPH)] compared with the wild-type (WT), which was due to decrease of kcat with NADPH in the R276H mutant and increase of Km with NADPH in the K270R/N272D mutant. Furthermore, R276H mutation led to significant thermostabilization in PsXR. The most positive effect on xylose fermentation to ethanol was found by using the Y-R276H strain, expressing PsXR R276H mutant and PsXDH WT: 20?% increase of ethanol production and 52?% decrease of xylitol excretion, compared with the Y-WT strain expressing PsXR WT and PsXDH WT. Measurement of intracellular coenzyme concentrations suggested that maintenance of the of NADPH/NADP+ and NADH/NAD+ ratios is important for efficient ethanol fermentation from xylose by recombinant S. cerevisiae.
机译:用木糖还原酶(XR)和来自Pichia智菌(PSXR和PSXDH)的木糖还原酶(XR)和木糖醇脱氢酶(XDH)基因转化的重组酿酒酵母菌株具有将木糖与木糖醇的不利排泄一起转化为乙醇,这可能是由于NADPH-偏振XR和NAD +依赖性XDH之间不同辅酶特异性引起的细胞间氧化还原性不平衡。在这项研究中,我们专注于发酵中突变的NADH偏爱PSXR的效果。与野外相比,r276H和K270R / N272D突变体分别以Nadh / NADPH的比例改善了52-和146倍,以NADH / NADPH的比例[(用NADH,kcat / km,kcat / km)]与野外相比型(WT),其是由于KCAT在R276H突变体中降低,并且在K270R / N272D突变体中增加了NADPH的KM。此外,R276H突变导致PSXR中的显着热稳定性。通过使用Y-R276H菌株,表达PSXR R276H突变体和PSXDH WT的乙醇产量增加,乙醇产量的增加和木质醇排泄的减少,发现了对乙醇至乙醇的最积极的影响。与Y-WT菌株相比,乙醇产量增加52〜%表达psxr wt和psxdh wt。细胞内辅酶浓度的测量表明,NADPH / NADP +和NADH / NAD +比率的维持对于通过重组S.酿酒酵母从木糖的有效乙醇发酵是重要的。

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