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Combinatorial Biosynthesis of Cyclic Lipopeptide Antibiotics: A Model for Synthetic Biology To Accelerate the Evolution of Secondary Metabolite Biosynthetic Pathways

机译:环脂肽抗生素的组合生物合成:合成生物学模型,以加速次级代谢产物生物合成途径的演变。

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Nonribosomal peptide synthetases (NRPSs) are giant multi-enzymes that carry out sequencial assembly line couplings of amino acids to generate linear or cyclic peptides. NRPSs are composed of repeating enzyme domains with modular organization to activate and couple specific amino acids in a particular order. From a synthetic biology perspective, they can be considered as peptide assembly machines composed of devices to couple fatty acids to L-amino acids, L-amino acids to L-amino acids, and D-amino acids to L-amino acids. The coupling devices are composed of specific parts that contain two or more enzyme domains that can be exchanged combinatorially to generate novel peptide assembly machines to produce novel peptides. The potent lipopeptide antibiotics daptomycin and A54145E have identical cyclic depsipeptide rings structures and stereochemistry but have divergent amino acid sequences. As their biosynthetic gene clusters are derived from an ancient ancestral lipopetide pathway, these lipopeptides provided an attractive model to develop combinatorial biosynthesis to generate antibiotics superior to daptomycin. These studies on combinatorial biosynthesis have helped generate guidelines for the successful assembly of NRPS parts and devices that can be used to generate novel lipopeptide structures and have established a basis for future synthetic biology studies to further develop combinatorial biosynthesis as a robust approach to natural product drug discovery.
机译:非核糖体肽合成酶(NRPS)是巨大的多酶,可进行氨基酸的顺序装配线偶联以生成线性或环状肽。 NRPS由具有模块结构的重复酶域组成,以特定顺序激活和偶联特定氨基酸。从合成生物学的角度看,它们可以看作是肽组装机器,由将脂肪酸与L-氨基酸偶联,L-氨基酸与L-氨基酸偶联以及D-氨基酸与L-氨基酸偶联的装置组成。偶联装置由包含两个或更多个酶结构域的特定部分组成,这些酶结构域可以组合交换以产生新颖的肽组装机以产生新颖的肽。有效的脂肽抗生素达托霉素和A54145E具有相同的环二肽环结构和立体化学,但氨基酸序列不同。由于它们的生物合成基因簇来自古老的祖先脂肽途径,因此这些脂肽为开发组合生物合成产生优于达托霉素的抗生素提供了有吸引力的模型。这些有关组合生物合成的研究有助于为成功组装可用于产生新型脂肽结构的NRPS零件和装置建立指导方针,并为未来的合成生物学研究奠定基础,以进一步发展组合生物合成作为天然产物药物的可靠方法发现。

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