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Rapid Restriction Enzyme-Free Cloning of PCR Products: A High-Throughput Method Applicable for Library Construction

机译:快速无限制性克隆PCR产物:一种高通量方法,可用于文库构建

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摘要

Herein, we describe a novel cloning strategy for PCR-amplified DNA which employs the type IIs restriction endonuclease BsaI to create a linearized vector with four base-long 5′-overhangs, and T4 DNA polymerase treatment of the insert in presence of a single dNTP to create vector-compatible four base-long overhangs. Notably, the insert preparation does not require any restriction enzyme treatment. The BsaI sites in the vector are oriented in such a manner that upon digestion with BsaI, a stuffer sequence along with both BsaI recognition sequences is removed. The sequence of the four base-long overhangs produced by BsaI cleavage were designed to be non-palindromic, non-compatible to each other. Therefore, only ligation of an insert carrying compatible ends allows directional cloning of the insert to the vector to generate a recombinant without recreating the BsaI sites. We also developed rapid protocols for insert preparation and cloning, by which the entire process from PCR to transformation can be completed in 6–8 h and DNA fragments ranging in size from 200 to 2200 bp can be cloned with equal efficiencies. One protocol uses a single tube for insert preparation if amplification is performed using polymerases with low 3′-exonuclease activity. The other protocol is compatible with any thermostable polymerase, including those with high 3′-exonuclease activity, and does not significantly increase the time required for cloning. The suitability of this method for high-throughput cloning was demonstrated by cloning batches of 24 PCR products with nearly 100% efficiency. The cloning strategy is also suitable for high efficiency cloning and was used to construct large libraries comprising more than 108 clones/µg vector. Additionally, based on this strategy, a variety of vectors were constructed for the expression of proteins in E. coli, enabling large number of different clones to be rapidly generated.
机译:在这里,我们描述了一种新的PCR扩增DNA克隆策略,该策略采用IIs型限制性​​核酸内切酶BsaI来创建具有四个碱基长5'-突出端的线性化载体,并在单个dNTP存在的情况下对插入物进行T4 DNA聚合酶处理创建矢量兼容的四个碱基长的突出端。值得注意的是,插入物制剂不需要任何限制酶处理。载体中的BsaI位点以这样的方式定向:在用BsaI消化后,去除了填充序列以及两个BsaI识别序列。 BsaI切割产生的四个碱基长的突出端的序列被设计为非回文,彼此不兼容。因此,仅携带带有相容末端的插入物的连接允许将插入物定向克隆至载体以产生重组体,而无需重建BsaI位点。我们还开发了用于插入物制备和克隆的快速方案,通过该方案,从PCR到转化的整个过程都可以在6-8小时内完成,并且可以以相同的效率克隆大小为200至2200 bp的DNA片段。如果使用具有低3'-核酸外切酶活性的聚合酶进行扩增,则一种方案使用单个试管进行插入物制备。另一个协议与任何热稳定的聚合酶兼容,包括具有高3'-核酸外切酶活性的聚合酶,并且不会显着增加克隆所需的时间。通过以近100%的效率克隆24个PCR产物,证明了该方法适用于高通量克隆。克隆策略也适用于高效克隆,并用于构建包含10个以上sup> 8 个克隆/ µg载体的大型文库。另外,基于该策略,构建了多种用于在大肠杆菌中表达蛋白质的载体,从而能够快速生成大量不同的克隆。

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