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Phage display and selection of lanthipeptides on the carboxy-terminus of the gene-3 minor coat protein

机译:基因3次要外壳蛋白的羧基末端的噬菌体展示和Lanthipepteptes的选择

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Ribosomally synthesized and post-translationally modified peptides (RiPPs) are an emerging class of natural products with drug-like properties. To fully exploit the potential of RiPPs as peptide drug candidates, tools for their systematic engineering are required. Here we report the engineering of lanthipeptides, a subclass of RiPPs characterized by multiple thioether cycles that are enzymatically introduced in a regio- and stereospecific manner, by phage display. This was achieved by heterologous co-expression of linear lanthipeptide precursors fused to the widely neglected C-terminus of the bacteriophage M13 minor coat protein pIII, rather than the conventionally used N-terminus, along with the modifying enzymes from distantly related bacteria. We observe that C-terminal precursor peptide fusions to pIII are enzymatically modified in the cytoplasm of the producing cell and subsequently displayed as mature cyclic peptides on the phage surface. Biopanning of large C-terminal display libraries readily identifies artificial lanthipeptide ligands specific to urokinase plasminogen activator (uPA) and streptavidin.
机译:核糖体合成和翻译后修饰的肽(RiPPs)是一类新兴的具有药物样性质的天然产物。为了充分利用RiPP作为肽药物候选物的潜力,需要对其进行系统工程设计的工具。在这里,我们报告工程化的多肽肽,RiPPs的一个亚类,其特征是通过噬菌体展示以区域和立体特异性方式酶促引入多个硫醚循环。这是通过与被广泛忽视的噬菌体M13次要外壳蛋白pIII的C末端(而不是常规使用的N末端)以及来自远缘细菌的修饰酶融合在一起的线性leptepteptide前体异源共表达而实现的。我们观察到与pIII的C端前体肽融合体在生产细胞的细胞质中被酶修饰,随后在噬菌体表面上显示为成熟的环状肽。大型C端展示库的生物淘选可轻松鉴定出对尿激酶纤溶酶原激活剂(uPA)和链霉亲和素具有特异性的人工多肽肽配体。

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