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A mechanism for ramified rolling circle amplification

机译:分叉滚动圈放大的机制

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Amplification of single-stranded DNA circles has wide utility for a variety of applications. The two-primer ramified rolling circle amplification (RAM) reaction provides exponential DNA amplification under isothermal conditions, creating a regular laddered series of double-stranded DNA products. However, the molecular mechanism of the RAM reaction remains unexplained. A RAM reaction model predicts exponential accumulation of a double-stranded DNA product size series, and product-size ratios, that are consistent with observed RAM reaction products. The mechanism involves generation of a series of increasing size intermediate templates; those templates produce RAM products and recursively generate smaller intermediate templates. The model allows prediction of the number of rounds of circular template replication. Real-time RAM reaction data are consistent with the model. Analysis of RAM reaction products shows exponential growth limitation consistent with the model's predictions. The model provides a rationale for the observed products of the RAM reaction, and the molecular yield among those products. Experimental results are consistent with the model.
机译:单链DNA环的扩增在多种应用中具有广泛的用途。两引物分支的滚动环扩增(RAM)反应可在等温条件下提供指数的DNA扩增,从而形成规则的梯形双链DNA产物系列。但是,RAM反应的分子机理仍然无法解释。 RAM反应模型预测双链DNA产物大小系列的指数积累以及产物大小比率,与观察到的RAM反应产物一致。该机制涉及生成一系列大小递增的中间模板;这些模板生成RAM产品,并递归生成较小的中间模板。该模型允许预测循环模板复制的轮数。实时RAM反应数据与模型一致。对RAM反应产物的分析显示出与模型预测一致的指数增长限制。该模型为观察到的RAM反应产物以及这些产物中的分子收率提供了理论依据。实验结果与模型吻合。

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