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在革兰氏阳性菌和革兰氏阴性菌宿主中异源表达分枝杆菌烯键单加氧酶。

Heterologous Expression of Mycobacterium Alkene Monooxygenases in Gram-Positive and Gram-Negative Bacterial Hosts.

机构信息

School of Life and Environmental Sciences, University of Sydney, NSW, Australia.

School of Life and Environmental Sciences, University of Sydney, NSW, Australia

出版信息

Appl Environ Microbiol. 2018 Jul 17;84(15). doi: 10.1128/AEM.00397-18. Print 2018 Aug 1.

Abstract

Alkene monooxygenases (MOs) are soluble di-iron-containing enzymes found in bacteria that grow on alkenes. Here, we report improved heterologous expression systems for the propene MO (PmoABCD) and ethene MO (EtnABCD) from strain NBB4. Strong functional expression of PmoABCD and EtnABCD was achieved in mc155, yielding epoxidation activities (62 and 27 nmol/min/mg protein, respectively) higher than any reported to date for heterologous expression of a di-iron MO system. Both PmoABCD and EtnABCD were specialized for the oxidation of gaseous alkenes (C to C), and their activity was much lower on liquid alkenes (C to C). Despite intensive efforts to express the complete EtnABCD enzyme in , this was not achieved, although recombinant EtnB and EtnD proteins could be purified individually in soluble form. The biochemical function of EtnD as an oxidoreductase was confirmed (1.36 μmol cytochrome reduced/min/mg protein). Cloning the EtnABCD gene cluster into KT2440 yielded detectable epoxidation of ethene (0.5 nmol/min/mg protein), and this could be stimulated (up to 1.1 nmol/min/mg protein) by the coexpression of chaperonins from either spp. or Successful expression of the ethene MO in a Gram-negative host was validated by both whole-cell activity assays and peptide mass spectrometry of induced proteins seen on SDS-PAGE gels. Alkene MOs are of interest for their potential roles in industrial biocatalysis, most notably for the stereoselective synthesis of epoxides. Wild-type bacteria that grow on alkenes have high activities for alkene oxidation but are problematic for biocatalysis, since they tend to consume the epoxide products. Using recombinant biocatalysts is the obvious alternative, but a major bottleneck is the low activities of recombinant alkene MOs. Here, we provide new high-activity recombinant biocatalysts for alkene oxidation, and we provide insights into how to further improve these systems.

摘要

烯烃单加氧酶(MOs)是一种可溶于水的二铁酶,存在于能以烯烃为生长基质的细菌中。在这里,我们报告了改进的烯丙基 MO(PmoABCD)和乙烯 MO(EtnABCD)异源表达系统,该系统来自 菌株 NBB4。在 mc155 中实现了 PmoABCD 和 EtnABCD 的强功能表达,分别产生 62 和 27 nmol/min/mg 蛋白的环氧化活性,高于迄今为止报道的任何二铁 MO 系统的异源表达。PmoABCD 和 EtnABCD 都专门用于氧化气态烯烃(C 到 C),它们在液态烯烃(C 到 C)上的活性要低得多。尽管我们努力在 中表达完整的 EtnABCD 酶,但未能成功,尽管可以单独以可溶性形式纯化重组 EtnB 和 EtnD 蛋白。EtnD 作为氧化还原酶的生化功能得到了证实(1.36 μmol 细胞色素还原/min/mg 蛋白)。将 EtnABCD 基因簇克隆到 KT2440 中,可检测到乙烯的环氧化(0.5 nmol/min/mg 蛋白),并且通过共表达来自 spp. 或 的伴侣蛋白可以刺激(高达 1.1 nmol/min/mg 蛋白)。在革兰氏阴性宿主中成功表达乙烯 MO 通过全细胞活性测定和 SDS-PAGE 凝胶上诱导蛋白的肽质量谱验证。烯烃 MO 因其在工业生物催化中的潜在作用而受到关注,特别是用于立体选择性合成环氧化物。以烯烃为生长基质的野生型细菌对烯烃氧化具有高活性,但对生物催化来说是个问题,因为它们往往会消耗环氧化物产物。使用重组生物催化剂是明显的选择,但主要的瓶颈是重组烯烃 MO 的低活性。在这里,我们提供了新的高活性重组烯烃氧化生物催化剂,并提供了如何进一步改进这些系统的见解。

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