首页> 外文期刊>Journal of peptide science: An official publication of the European Peptide Society >Protein trans-splicing on an M13 bacteriophage: Towards directed evolution of a semisynthetic split intein by phage display
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Protein trans-splicing on an M13 bacteriophage: Towards directed evolution of a semisynthetic split intein by phage display

机译:M13噬菌体上的蛋白质反式剪接:通过噬菌体展示实现半合成裂解内含肽的定向进化

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Split inteins link their fused peptide or protein sequences with a peptide bond in an autocatalytic reaction called protein trans-splicing. This reaction is becoming increasingly important for a variety of applications in protein semisynthesis, polypeptide circularisation, construction of biosensors, or segmental isotopic labelling of proteins. However, split inteins exhibit greatly varying solubility, efficiency and tolerance towards the nature of the fused sequences as well as reaction conditions. We envisioned that phage display as an in vitro selection technique would provide a powerful tool for the directed evolution of split inteins with improved properties. As a first step towards this goal, we show that presentation of active split inteins on an M13 bacteriophage is feasible. Two different C-terminal intein fragments of the Ssp DnaB intein, artificially split at amino acid positions 104 and 11, were encoded in a phagemid vector in fusion to a truncated gpIII protein. For efficient production of hybrid phages, the presence of a soluble domain tag at their N-termini was necessary. Immunoblot analysis revealed that the hybrid phages supported protein trans-splicing with a protein or a synthetic peptide, respectively, containing the complementary intein fragment. Incorporation of biotin or desthiobiotin by this reaction provides a straightforward strategy for future enrichment of desired mutants from randomised libraries of the C-terminal intein fragments on streptavidin beads. Protein semisynthesis on a phage could also be exploited for the selection of chemically modified proteins with unique properties. Protein trans-splicing has recently received increasing attention for the semisynthesis of proteins. We report that a semisynthetic protein can be generated on the surface of an M13 bacteriophage using an artificially split Ssp DnaB intein. This finding will provide the basis for improving split inteins as ligation tools by directed evolution and phage display.
机译:在称为蛋白质反式剪接的自催化反应中,分裂的整联蛋白将其融合的肽或蛋白质序列与肽键相连。对于蛋白质半合成,多肽环化,生物传感器的构建或蛋白质的分段同位素标记中的各种应用,该反应变得越来越重要。但是,分裂的内含子对融合序列的性质以及反应条件表现出很大的溶解度,效率和耐受性。我们预想,作为体外选择技术的噬菌体展示将为具有改良特性的分裂内含肽的定向进化提供强大的工具。作为朝着这个目标迈出的第一步,我们证明了在M13噬菌体上呈递活性分裂内含子是可行的。在噬菌粒载体中编码与截短的gpIII蛋白融合的Ssp DnaB内含肽的两个不同的C末端内含肽片段,在氨基酸位置104和11处人工分割。为了有效生产杂交噬菌体,在其N末端存在可溶性结构域标签是必要的。免疫印迹分析表明,杂合噬菌体分别支持含有互补内含蛋白片段的蛋白质或合成肽进行蛋白质反式剪接。通过该反应掺入生物素或脱硫生物素为将来从链霉亲和素珠上的C端内含肽片段的随机文库中富集所需突变体提供了直接的策略。噬菌体上的蛋白质半合成也可用于选择具有独特性质的化学修饰蛋白质。蛋白质反式剪接最近对于蛋白质的半合成越来越受到关注。我们报告说,可以使用人工分裂的Ssp DnaB内含肽在M13噬菌体的表面上生成半合成蛋白。该发现将为通过定向进化和噬菌体展示改善作为连接工具的分裂内含蛋白提供基础。

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