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Strand displacement amplification--an isothermal, in vitro DNA amplification technique.

机译:链置换扩增-等温体外DNA扩增技术。

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摘要

Strand Displacement Amplification (SDA) is an isothermal, in vitro nucleic acid amplification technique based upon the ability of HincII to nick the unmodified strand of a hemiphosphorothioate form of its recognition site, and the ability of exonuclease deficient klenow (exo- klenow) to extend the 3'-end at the nick and displace the downstream DNA strand. Exponential amplification results from coupling sense and antisense reactions in which strands displaced from a sense reaction serve as target for an antisense reaction and vice versa. In the original design (G. T. Walker, M. C. Little, J. G. Nadeau and D. D. Shank (1992) Proc. Natl. Acad. Sci 89, 392-396), the target DNA sample is first cleaved with a restriction enzyme(s) in order to generate a double-stranded target fragment with defined 5'- and 3'-ends that can then undergo SDA. Although effective, target generation by restriction enzyme cleavage presents a number of practical limitations. We report a new target generation scheme that eliminates the requirement for restriction enzyme cleavage of the target sample prior to amplification. The method exploits the strand displacement activity of exo- klenow to generate target DNA copies with defined 5'- and 3'-ends. The new target generation process occurs at a single temperature (after initial heat denaturation of the double-stranded DNA). The target copies generated by this process are then amplified directly by SDA. The new protocol improves overall amplification efficiency. Amplification efficiency is also enhanced by improved reaction conditions that reduce nonspecific binding of SDA primers. Greater than 10(7)-fold amplification of a genomic sequence from Mycobacterium tuberculosis is achieved in 2 hours at 37 degrees C even in the presence of as much as 10 micrograms of human DNA per 50 microL reaction. The new target generation scheme can also be applied to techniques separate from SDA as a means of conveniently producing double-stranded fragments with 5'- and 3'-sequences modified as desired.
机译:链置换扩增(SDA)是一种等温的体外核酸扩增技术,其基于HincII对其识别位点的半硫代磷酸酯形式的未修饰链进行切口的能力以及核酸外切酶缺陷型klenow(exo-klenow)的扩展能力。切口处的3'末端取代了下游DNA链。指数扩增是由有义和反义反应耦合产生的,其中从有义反应移位的链用作反义反应的靶标,反之亦然。在原始设计中(GT Walker,MC Little,JG Nadeau和DD Shank(1992)Proc。Natl。Acad。Sci 89,392-396),首先用限制酶切割目标DNA样品,以便产生具有定义的5'和3'末端的双链靶片段,然后可以对其进行SDA。尽管有效,但是通过限制酶切割产生靶标存在许多实际限制。我们报告了一种新的目标生成方案,该方案消除了扩增前目标样品限制性酶切的要求。该方法利用exoklenow的链置换活性产生具有5'-和3'-末端的目标DNA拷贝。新的靶标生成过程在单个温度下发生(在双链DNA初始热变性后)。然后通过SDA直接扩增通过此过程生成的目标副本。新协议提高了整体放大效率。改善的反应条件可减少SDA引物的非特异性结合,从而提高扩增效率。即使在每50微升反应中存在多达10微克人类DNA的情况下,在37摄氏度下2小时内,结核分枝杆菌的基因组序列的扩增也超过10(7)倍。新的靶标产生方案也可以应用于与SDA分离的技术,作为方便地产生5'和3'序列按要求修饰的双链片段的方法。

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