首页> 外文期刊>Microbial Cell Factories >Establishing an innovative carbohydrate metabolic pathway for efficient production of 2-keto- l -gulonic acid in Ketogulonicigenium robustum initiated by intronic promoters
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Establishing an innovative carbohydrate metabolic pathway for efficient production of 2-keto- l -gulonic acid in Ketogulonicigenium robustum initiated by intronic promoters

机译:建立由内含子启动子启动的创新性碳水化合物代谢途径,以在强壮的番茄根瘤菌中高效生产2-酮-1-古洛糖酸

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2-Keto-l-gulonic acid (2-KGA), the precursor of vitamin C, is currently produced by two-step fermentation. In the second step, l-sorbose is transformed into 2-KGA by the symbiosis system composed of Ketogulonicigenium vulgare and Bacillus megaterium. Due to the different nutrient requirements and the uncertain ratio of the two strains, the symbiosis system significantly limits strain improvement and fermentation optimization. In this study, Ketogulonicigenium robustum SPU_B003 was reported for its capability to grow well independently and to produce more 2-KGA than that of K. vulgare in a mono-culture system. The complete genome of K. robustum SPU_B003 was sequenced, and the metabolic characteristics were analyzed. Compared to the four reported K. vulgare genomes, K. robustum SPU_B003 contained more tRNAs, rRNAs, NAD and NADP biosynthetic genes, as well as regulation- and cell signaling-related genes. Moreover, the amino acid biosynthesis pathways were more complete. Two species-specific internal promoters, P1 (orf_01408 promoter) and P2 (orf_02221 promoter), were predicted and validated by detecting their initiation activity. To efficiently produce 2-KGA with decreased CO2 release, an innovative acetyl-CoA biosynthetic pathway (XFP-PTA pathway) was introduced into K. robustum SPU_B003 by expressing heterologous phosphoketolase (xfp) and phosphotransacetylase (pta) initiated by internal promoters. After gene optimization, the recombinant strain K. robustum/pBBR-P1_xfp2502-P2_pta2145 enhanced acetyl-CoA approximately 2.4-fold and increased 2-KGA production by 22.27% compared to the control strain K. robustum/pBBR1MCS-2. Accordingly, the transcriptional level of the 6-phosphogluconate dehydrogenase (pgd) and pyruvate dehydrogenase genes (pdh) decreased by 24.33?±?6.67 and 8.67?±?5.51%, respectively. The key genes responsible for 2-KGA biosynthesis, sorbose dehydrogenase gene (sdh) and sorbosone dehydrogenase gene (sndh), were up-regulated to different degrees in the recombinant strain. The genome-based functional analysis of K. robustum SPU_B003 provided a new understanding of the specific metabolic characteristics. The new XFP-PTA pathway was an efficient route to enhance acetyl-CoA levels and to therefore promote 2-KGA production.
机译:维生素C的前体2-酮基古洛糖酸(2-KGA)目前通过两步发酵生产。在第二步中,由山葵酮和巨大芽孢杆菌组成的共生系统将L-山梨糖转化为2-KGA。由于不同的营养需求和两种菌株的不确定比例,共生系统极大地限制了菌株的改良和发酵的优化。在这项研究中,据报道,健壮酮单胞菌SPU_B003具有独立生长的能力,并且在单一培养系统中比普通菜产生更多的2-KGA。对K.robustum SPU_B003的完整基因组进行测序,并分析其代谢特性。与四个已报道的K. vulgare基因组相比,K.robustum SPU_B003包含更多的tRNA,rRNA,NAD和NADP生物合成基因,以及与调节和细胞信号传导相关的基因。而且,氨基酸的生物合成途径更加完整。通过检测它们的启动活性,预测并验证了两个物种特异性内部启动子P1(orf_01408启动子)和P2(orf_02221启动子)。为了有效地产生具有降低的CO2释放量的2-KGA,通过表达内部启动子启动的异源磷酸酮醇酶(xfp)和磷酸转乙酰基酶(pta),将创新的乙酰辅酶A生物合成途径(XFP-PTA途径)引入了鲁棒梭菌SPU_B003。基因优化后,重组菌株K.robustum / pBBR-P1_xfp2502-P2_pta2145与对照菌株K.robustum / pBBR1MCS-2相比,将乙酰辅酶A含量提高了约2.4倍,并将2-KGA产量提高了22.27%。因此,6-磷酸葡糖酸脱氢酶(pgd)和丙酮酸脱氢酶基因(pdh)的转录水平分别降低了24.33±6.67和8.67±5.51%。在重组菌株中,负责2-KGA生物合成的关键基因山梨糖脱氢酶基因(sdh)和山梨糖酮脱氢酶基因(sndh)被不同程度上调。罗布斯克鲁维酵母SPU_B003的基于基因组的功能分析提供了对特定代谢特征的新理解。新的XFP-PTA途径是提高乙酰辅酶A水平并因此促进2-KGA产生的有效途径。

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