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首页> 外文期刊>Metabolic engineering >Characterization of the Clostridium thermocellum AdhE, NfnAB, ferredoxin and Pfor proteins for their ability to support high titer ethanol production in Thermoanaerobacterium saccharolyticum
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Characterization of the Clostridium thermocellum AdhE, NfnAB, ferredoxin and Pfor proteins for their ability to support high titer ethanol production in Thermoanaerobacterium saccharolyticum

机译:Thertridium Thermocellum Adhe,NFnab,Ferredoxin和Put蛋白的表征在热氨基杀菌杆菌中支持高滴度乙醇生产的能力

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The thermophilic anaerobes Thermoanaerobacterium saccharolyticum and Clostridium thermocellum are good candidates for lignocellulosic ethanol production. T. saccharolyticum has been successfully engineered to produce ethanol at high titer (70 g/L). The maximum ethanol titer of engineered strains of C. thermocellum is only 25 g/L. We hypothesize that one or more of the enzymes in the ethanol production pathway in C. thermocellum is not adequate for ethanol production at high titer. In this study, we focused on the enzymes responsible for the part of the ethanol production pathway from pyruvate to ethanol. In T. saccharolyticum, we replaced all of the genes encoding proteins in this pathway with their homologs from C. thermocellum and examined what combination of gene replacements restricted ethanol titer. We found that a pathway consisting of Ct_nfnAB, Ct_fd, Ct_adhE and Ts_pforA was sufficient to support ethanol titer greater than 50 g/L, however replacement of Ts_pforA by Ct_pfor1 dramatically decreased the maximum ethanol titer to 14 g/L. We then demonstrated that the reason for reduced ethanol production is that the Ct_pfor1 is inhibited by accumulation of ethanol and NADH, while Ts_pforA is not.
机译:嗜热厌氧热橘杆菌和梭菌热团块是木质纤维素乙醇生产的良好候选者。已经成功地设计成高滴度(70g / L)以生产乙醇。 C. Thermocellum的工程化菌株的最大乙醇滴度仅为25克/升。我们假设乙醇生产途径中的一种或多种酶在C. Thermocellum在高滴度下的乙醇生产不足。在这项研究中,我们专注于负责从丙酮酸到乙醇的乙醇生产途径的部分的酶。在T. Saccharolyticum中,我们用来自C.热团块的同源物替换在该途径中编码蛋白质的所有基因,并检查基因替代的组合限制乙醇滴度。我们发现由CT_NFNAB,CT_FD,CT_ADHE和TS_PFORA组成的途径足以支持大于50g / L的乙醇滴度,但是通过CT_PFOR1更换TS_PFORA,显着降低了最大乙醇滴度至14克/升。然后,我们证明了降低乙醇产量的原因是通过乙醇和NADH的积累来抑制CT_PFOR1,而TS_PFORA则不是。

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