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Control of serine integrase recombination directionality by fusion with the directionality factor

机译:通过融合方向性因子控制丝氨酸整合酶重组的方向性

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摘要

Bacteriophage serine integrases are extensively used in biotechnology and synthetic biology for assembly and rearrangement of DNA sequences. Serine integrases promote recombination between two different DNA sites, attP and attB, to form recombinant attL and attR sites. The ‘reverse’ reaction requires another phage-encoded protein called the recombination directionality factor (RDF) in addition to integrase; RDF activates attL × attR recombination and inhibits attP × attB recombination. We show here that serine integrases can be fused to their cognate RDFs to create single proteins that catalyse efficient attL × attR recombination in vivo and in vitro, whereas attP × attB recombination efficiency is reduced. We provide evidence that activation of attL × attR recombination involves intra-subunit contacts between the integrase and RDF moieties of the fusion protein. Minor changes in the length and sequence of the integrase–RDF linker peptide did not affect fusion protein recombination activity. The efficiency and single-protein convenience of integrase–RDF fusion proteins make them potentially very advantageous for biotechnology/synthetic biology applications. Here, we demonstrate efficient gene cassette replacement in a synthetic metabolic pathway gene array as a proof of principle.
机译:噬菌丝氨酸整合在生物技术和合成生物学中广泛用于DNA序列的组装和重排。丝氨酸整合促进两个不同的DNA位点attP和attB之间的重组,以形成重组attL和attR位点。除了整合酶外,“逆向”反应还需要另一种噬菌体编码的蛋白质,称为重组方向性因子(RDF)。 RDF激活attL×attR重组,并抑制attP×attB重组。我们在这里显示丝氨酸整合可以融合到其同源RDFs,以创建可在体内和体外催化有效的atL×attR重组的单个蛋白质,而attP×attB重组效率降低。我们提供的证据表明,attL×attR重组的激活涉及融合蛋白的整合酶和RDF部分之间的亚基内接触。整合酶-RDF接头肽的长度和序列的微小变化不会影响融合蛋白的重组活性。整合酶-RDF融合蛋白的效率和单蛋白便利性使其对于生物技术/合成生物学应用具有潜在的优势。在这里,我们证明了合成代谢途径基因阵列中有效的基因盒置换是原理的证明。

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