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首页> 外文期刊>RSC Advances >Integration of heterologous 4-hydroxybenzoic acid transport proteins in Rhodobacter sphaeroides for enhancement of coenzyme Q10 production
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Integration of heterologous 4-hydroxybenzoic acid transport proteins in Rhodobacter sphaeroides for enhancement of coenzyme Q10 production

机译:异源4-羟基苯甲酸转运蛋白在球形红细菌中的整合,以增强辅酶Q 10 的产生

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The highly redox-active compound, Coenzyme Q10 (CoQ10), has attracted increasing interest due to its clinical benefits and important applications in the pharmaceutical, food and health industries. Although the metabolic pathways involved in CoQ10 biosynthesis are known, very few reports are available concerning the development of engineering strategies to enhance CoQ10 production in the natural producer Rhodobacter sphaeroides. In this work, three membrane transport proteins, AcPcaK, KpPcaK, and CgPcaK from different organisms (Acinetobacter calcoaceticus, Klebsiella pneumoniae and Corynebacterium glutamicum, respectively) were individually heterologously expressed in R. sphaeroides GY-2 to enhance the uptake of extracellular 4-hydroxybenzoic acid (4HBA), an important intermediate of CoQ10 synthesis. Each of the PcaK open reading frames (ORFs) was inserted behind an RFP gene to weaken their expression in order to avoid inhibition of cell growth. The transport efficiency and consumption of 4HBA, as well as CoQ10 productivity of the resulting recombinant R. sphaeroides GY-2 strains has been studied. The CoQ10 productivity of RS-CgPcaK and RS-KpPcaK was effectively improved by the addition of external 4HBA, reaching maximum values of 17.45 and 18.06 mg g?1 DCW (18.05% and 20.82% higher than R. sphaeroides GY-2), respectively. The strategy used in this study proved effective for enhancing the biotechnological production of CoQ10 and thus holds promise for further improvements, including industrial applications.
机译:具有高氧化还原活性的化合物辅酶Q 10 (CoQ 10 )由于其高的氧化还原活性而引起了越来越多的关注临床益处和在制药,食品和卫生行业的重要应用。尽管已知参与CoQ 10 生物合成的代谢途径,但关于增强CoQ 10 sphaeroides 的> 生产。在这项工作中,分别来自不同生物体的三种膜转运蛋白AcPcaK,KpPcaK和CgPcaK(钙不动杆菌,肺炎克雷伯菌和谷氨酸棒杆菌) )分别在 R中异源表达。球菌Gem-2可以提高细胞内4-羟基苯甲酸(4HBA)的摄取,该4-羟基苯甲酸是辅酶Q 10 合成的重要中间体。为了避免抑制细胞生长,将每个PcaK开放阅读框(ORF)插入RFP基因后面以减弱其表达。重组 R的4HBA的运输效率和消耗量以及CoQ 10 生产率。研究了Sphaeroides GY-2菌株。通过添加外部4HBA可有效提高RS-CgPcaK和RS-KpPcaK的CoQ 10 生产率,达到最大值17.45和18.06 mg g ?1 DCW(分别比 sphaeroides GY-2高18.05%和20.82%)。这项研究中使用的策略被证明可以有效地提高CoQ 10 的生物技术生产,因此有望进一步改进,包括工业应用。

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