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首页> 外文期刊>ACS Synthetic Biology >Reconstituted Biosynthesis of the Nonribosomal Macrolactone Antibiotic
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Reconstituted Biosynthesis of the Nonribosomal Macrolactone Antibiotic

机译:非核糖体大内酯类抗生素的重组生物合成

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The structural complexity of nonribosomal peptides (NRPs) impeding economic chemical synthesis and poor cultivability of source organisms limits the development of bioprocesses for novel bioactive compounds. Since nonribosomal peptide synthetases (NRPSs) assemble NRPs from simple amino acid building blocks, heterologous expression of NRPSs in a robust and easy to manipulate expression host is an attractive strategy to make pharmaceutically relevant NRPs more accessible and is also a basis for engineering of these enzymes to generate novel synthetic bioactive compounds. Here we show a systematic approach for the heterologous expression of the 654 kDa heterodimeric valinomycin synthetase (VlmSyn) from Streptomyces tsusimaensis in a soluble and active form in Escherichia coil. VlmSyn activity and precursor requirements were determined in vitro and provided evidence for a previously proposed model of valinomycin biosynthesis. In vivo production of recombinant valinomycin, a macrolactone antibiotic with reported antifungal, antibacterial, and antiviral activities, was achieved using an engineered E. coli strain growing in inexpensive media and independent of the supplementation with precursors and further optimization of the cultivation conditions. Tailoring of VlmSyn in E. coli paves the way to the production of novel valinomycin analogues in the future
机译:非核糖体肽(NRPs)的结构复杂性阻碍了经济化学合成和源生物的可培养性差,从而限制了新型生物活性化合物的生物过程的发展。由于非核糖体肽合成酶(NRPS)由简单的氨基酸构件组装NRP,因此,在坚固且易于操作的表达宿主中异源表达NRPS是使药物相关NRP更易获得的诱人策略,并且也是这些酶工程化的基础产生新的合成生物活性化合物。在这里,我们显示了一种系统化的方法,用于以可溶性和活性形式在大肠杆菌线圈中来自链霉菌链霉菌的654 kDa异源二聚体缬氨酸合成酶(VlmSyn)进行异源表达。 VlmSyn活性和前体需求在体外确定,并为以前提出的缬氨霉素生物合成模型提供了证据。使用在廉价培养基中生长且不依赖前体的补充和进一步优化培养条件的工程化大肠杆菌菌株,可实现体内生产重组缬氨霉素(一种具有报道的抗真菌,抗菌和抗病毒活性的大内酯抗生素)。在大肠杆菌中定制VlmSyn为将来生产新的缬氨霉素类似物铺平了道路

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