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首页> 外文期刊>Biotechnology Progress >Separation of Genomic DNA from Plasmid DNA by Selective Renaturation with Immobilized Metal Affinity Capture
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Separation of Genomic DNA from Plasmid DNA by Selective Renaturation with Immobilized Metal Affinity Capture

机译:通过固定化金属亲和捕获的选择性变性从质粒DNA中分离基因组DNA

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In contrast to proteins,many nucleic acids can undergo reversible modification of their conformations,and this flexibility can be used to facilitate purification.Selective renaturation with capture is a novel method of removing contaminating genomic DNA from plasmid samples.Plasmid DNA quickly renatures after thermal denaturation and cooling (or alkaline denaturation followed by neutralization),whereas genomic DNA remains locally denatured after rapid cooling in mismatch-stabilizing high ionic strength buffer.Partially denatured genomic DNA can be selectively bound to a metal chelate affinity adsorbent through exposed purine bases,while double-stranded renatured plasmid DNA is not bound.Using this method we have readily achieved 1,000,000-fold clearance of 71 wt % contaminating E.coli genomic DNA from plasmid samples.
机译:与蛋白质相反,许多核酸可以对其构型进行可逆修饰,这种灵活性可以用于促进纯化。具有捕获作用的选择性复性是一种从质粒样品中去除污染的基因组DNA的新方法。质粒DNA在热变性后迅速复性然后冷却(或先进行碱变性,然后中和),然后在失配稳定的高离子强度缓冲液中快速冷却后,基因组DNA仍保持局部变性。部分变性的基因组DNA可通过暴露的嘌呤碱基选择性地结合到金属螯合亲和吸附剂上,而双倍链的复性质粒DNA没有结合。使用这种方法,我们已经轻松实现了从质粒样品中污染71%的大肠杆菌基因组DNA的1,000,000倍清除率。

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