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Preparation of Phi29 DNA Polymerase Free of Amplifiable DNA Using Ethidium Monoazide, an Ultraviolet-Free Light-Emitting Diode Lamp and Trehalose

机译:使用单叠氮化乙锭,无紫外发光二极管灯和海藻糖制备不含可扩增DNA的Phi29 DNA聚合酶

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摘要

We previously reported that multiply-primed rolling circle amplification (MRPCA) using modified random RNA primers can amplify tiny amounts of circular DNA without producing any byproducts. However, contaminating DNA in recombinant Phi29 DNA polymerase adversely affects the outcome of MPRCA, especially for negative controls such as non-template controls. The amplified DNA in negative control casts doubt on the result of DNA amplification. Since Phi29 DNA polymerase has high affinity for both single-strand and double-stranded DNA, some amount of host DNA will always remain in the recombinant polymerase. Here we describe a procedure for preparing Phi29 DNA polymerase which is essentially free of amplifiable DNA. This procedure is realized by a combination of host DNA removal using appropriate salt concentrations, inactivation of amplifiable DNA using ethidium monoazide, and irradiation with visible light from a light-emitting diode lamp. Any remaining DNA, which likely exists as oligonucleotides captured by the Phi29 DNA polymerase, is degraded by the 3′-5′ exonuclease activity of the polymerase itself in the presence of trehalose, used as an anti-aggregation reagent. Phi29 DNA polymerase purified by this procedure has little amplifiable DNA, resulting in reproducible amplification of at least ten copies of plasmid DNA without any byproducts and reducing reaction volume. This procedure could aid the amplification of tiny amounts DNA, thereby providing clear evidence of contamination from laboratory environments, tools and reagents.
机译:我们以前曾报道过,使用修饰的随机RNA引物进行的多引物滚动环扩增(MRPCA)可以扩增少量的环状DNA,而不会产生任何副产物。但是,在重组Phi29 DNA聚合酶中污染DNA会对MPRCA的结果产生不利影响,尤其是对于阴性对照(例如非模板对照)而言。阴性对照中扩增的DNA对DNA扩增的结果产生怀疑。由于Phi29 DNA聚合酶对单链和双链DNA都具有高亲和力,因此一定数量的宿主DNA将始终保留在重组聚合酶中。在这里,我们描述了制备基本不含可扩增DNA的Phi29 DNA聚合酶的程序。通过使用适当的盐浓度去除宿主DNA,使用单叠氮化乙锭使可扩增DNA失活以及用来自发光二极管灯的可见光照射的组合实现了该程序。在作为抗聚集剂的海藻糖存在下,聚合酶本身的3'-5'核酸外切酶活性会降解任何可能被Phi29 DNA聚合酶捕获的寡核苷酸形式存在的剩余DNA。通过该程序纯化的Phi29 DNA聚合酶几乎没有可扩增的DNA,从而可再现扩增至少十个拷贝的质粒DNA,而没有任何副产物并减少了反应体积。该程序可以帮助扩增少量的DNA,从而提供明显的证据证明实验室环境,工具和试剂有污染。

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