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Efficient heterologous expression of nicotinate dehydrogenase in Comamonas testosteroni CNB-2 with transcriptional, folding enhancement strategy

机译:烟蛋白脱氢酶在转录,折叠增强策略中烟蛋白脱氢酶的高效异源表达

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Nicotinate dehydrogenase (NDHase) from Comamonas testosteroni JA1 catalyzes the C6 hydroxylation of 3-cy-anopyridine with high regional selectivity, which is a very difficult and complex reaction for chemical synthesis. However, because NDHase is a membrane protein with three subunits (ndhS, ndhL and ndhM), it is difficult to express the enzyme in a functional form using common hosts such as Escherichia coli, Bacilus subtilis or Pichia pastoris. Furthermore, the enzyme requires special electron transfer chains in the membrane system for proper catalytic activity. Thus, we investigated the expression of NDHase in non-model bacterial strains, which are evolutionarily similar to C. testosteroni JA1, using several broad-host plasmids with different copy numbers as expression vectors. We successfully expressed NDHase in soluble from using the pVLT33 vector in C. testosteroni CNB-2, and found the activity of enzyme to be 40.6 U/L. To further improve the expression of NDHase in C. testosteroni CNB-2, we trialed a 17-like MmP1 system, composed of MmP1 RNA polymerase and an MmP1 promoter, which is used for transcriptional control in non-model bacteria. This increased protein expression and enzyme activity doubled to 90.5 U/L. A molecular chaperone was co-expressed using pBBR1 MCS-5 in the same host to improve the efficiency of folding and assembly of multi-subunit structures. The maximum activity was 115 U/L using the molecular chaperone GroES-EL, far surpassing the previously reported level, although expression was almost equivalent. These results indicate that a strategy involving the construction of a T7-like system and co-expression of a molecular chaperone offers an efficient approach for heterologous expression of enzymes that are difficult to express in functional forms using conventional hosts.
机译:来自Comamonas Testosteroni JA1的烟酸脱氢酶(NDHase)催化具有高区域选择性的3-碳吡啶的C6羟基化,这是一种非常困难和复杂的化学合成反应。然而,因为NDHase是一种具有三个亚基(NDHS,NDH1和NDHM)的膜蛋白,所以难以使用常见的宿主以诸如大肠杆菌,Bacilus枯草芽孢杆菌或Pichia牧场等常用宿主以功能形式表达酶。此外,酶需要膜系统中的特殊电子转移链以进行适当的催化活性。因此,我们研究了NDHase在非模型细菌菌株中的表达,其使用具有不同拷贝数作为表达载体的几个宽宿主质粒,其与C. testosteroni Ja1相似。我们在溶于溶于C. Testosteroni CNB-2中的PVLT33载体成功地表达了NDHase,并发现酶的活性为40.6u / l。为了进一步改善C. testosteroni CNB-2中NDHase的表达,我们试验了一种由MMP1 RNA聚合酶和MMP1启动子组成的17种类似MMP1系统,其用于非模型细菌中的转录对照。这种增加的蛋白质表达和酶活性加倍至90.5 U / L.在同一主体中使用PBBR1 MCS-5共表达分子伴侣,以提高多亚基结构的折叠和组装的效率。尽管表达几乎等同,但最大活性使用分子伴侣Groes-EL,远远超过先前报告的水平。这些结果表明,涉及构建T7样系统的策略和分子伴侣的共同表达提供了使用常规主体以功能形式表达的异源表达的有效方法。

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