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Restriction site free cloning (RSFC) plasmid family for seamless, sequence independent cloning in Pichia pastoris

机译:限制性位点自由克隆(RSFC)质粒家族,可在巴斯德毕赤酵母中实现无缝,序列独立的克隆

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Background Tagging proteins is a standard method facilitating protein detection, purification or targeting. When tagging a certain protein of interest, it is challenging to predict which tag will give optimal results and will not interfere with protein folding, activity or yields. Ideally, multiple tags and positions are tested which however complicates molecular cloning and expression vector generation. In conventional cloning, tags are either added on PCR primers (requiring a distinct primer and PCR product per tag) or provided on the vector (typically leaving a restriction site scar). Results Here we report a vector family of 40 plasmids allowing simple, seamless fusions of a single PCR product with various N- and C-terminal tags, signal sequences and promoters. The restriction site free cloning (RSFC) strategy presented in this paper relies on seamless cloning using type IIS restriction endonucleases. After cutting out a stuffer (placeholder) fragment from the vectors, a single PCR product can be directly inserted in frame into all 40 plasmids using blunt end or TA ligations, requiring only verification of the orientation. We have established a RSFC vector family for the commonly used protein expression host Pichia pastoris and demonstrated the system with the secretory expression of horseradish peroxidase (HRP). HRP fusions to four tags (Myc, FLAG, His, Strep) and two fusion proteins (GFP and MBP) showed a 31-fold difference in volumetric activities. C-terminal tagging caused in some cases almost a complete loss of function, whereas N-terminal tags showed moderate differences. Conclusions The RSFC vectors provide an unprecedented toolbox for expression optimization in P. pastoris. The results obtained with HRP underline the importance of comparing different tags to maximize activities of fusion proteins. In a similar fashion the RSFC strategy can be applied in other expression hosts to screen for optimal promoters, signal sequences or to facilitate the evaluation of (iso-) enzyme families.
机译:背景标记蛋白质是促进蛋白质检测,纯化或靶向的标准方法。当标记某种目标蛋白质时,预测哪个标记将提供最佳结果并且不会干扰蛋白质折叠,活性或产量是一项挑战。理想情况下,要测试多个标签和位置,但这会使分子克隆和表达载体的产生复杂化。在常规克隆中,将标签添加到PCR引物上(每个标签需要不同的引物和PCR产物)或提供在载体上(通常留下限制性位点疤痕)。结果在这里我们报告了一个由40个质粒组成的载体家族,该载体家族可实现单个PCR产物与各种N端和C端标签,信号序列和启动子的简单无缝​​融合。本文提出的无限制性位点克隆(RSFC)策略依赖于使用IIS型限制性内切核酸酶的无缝克隆。从载体切出填充片段(占位符)后,可以使用平末端或TA连接将单个PCR产物直接按框插入所有40个质粒中,仅需验证方向即可。我们为常用的蛋白质表达宿主巴斯德毕赤酵母建立了RSFC载体家族,并证明了该系统具有辣根过氧化物酶(HRP)的分泌表达。与四个标签(Myc,FLAG,His,Strep)和两个融合蛋白(GFP和MBP)的HRP融合蛋白在体积活性上的差异为31倍。在某些情况下,C末端标签几乎导致功能完全丧失,而N末端标签显示中等差异。结论RSFC载体为巴斯德毕赤酵母表达优化提供了前所未有的工具箱。 HRP获得的结果强调了比较不同标签以最大化融合蛋白活性的重要性。 RSFC策略可以类似的方式应用于其他表达宿主,以筛选最佳启动子,信号序列或促进对(iso-)酶家族的评估。

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