Walter N G, Strunk G
Department of Biochemical Kinetics, Max Planck Institute for Biophysical Chemistry, Göttingen, Germany.
Proc Natl Acad Sci U S A. 1994 Aug 16;91(17):7937-41. doi: 10.1073/pnas.91.17.7937.
Strand displacement amplification is an isothermal DNA amplification reaction based on a restriction endonuclease nicking its recognition site and a polymerase extending the nick at its 3' end, displacing the downstream strand. The reaction resembles rolling-circle replication of single-stranded phages and small plasmids. The displaced sense strand serves as target for an antisense reaction and vice versa, resulting in exponential growth and the autocatalytic nature of this in vitro reaction as long as the template is the limiting agent. We describe the optimization of strand displacement amplification for in vitro evolution experiments under serial transfer conditions. The reaction was followed and controlled by use of the fluorescent dye thiazole orange binding to the amplified DNA. We were able to maintain exponential growth conditions with a doubling time of 3.0 min throughout 100 transfers or approximately 350 molecular generations by using an automatic handling device. Homology of in vitro amplification with rolling-circle replication was mirrored by the occurring evolutionary processes. Deletion events most likely caused by a slipped mispairing mechanism as postulated for in vivo replication took place. Under our conditions, the mutation rate was high and a molecular quasi-species formed with a mutant lacking internal hairpin formation ability and thus outgrowing all other species under dGTP/dCTP deficiency.
链置换扩增是一种等温DNA扩增反应,基于限制性内切酶在其识别位点产生切口,以及聚合酶在切口的3'端延伸,置换下游链。该反应类似于单链噬菌体和小质粒的滚环复制。被置换的有义链作为反义反应的靶标,反之亦然,只要模板是限制因素,就会导致指数增长以及这种体外反应的自催化性质。我们描述了在连续转移条件下用于体外进化实验的链置换扩增的优化。通过使用与扩增DNA结合的荧光染料噻唑橙来跟踪和控制反应。通过使用自动处理设备,我们能够在100次转移或大约350个分子世代中保持指数增长条件,倍增时间为3.0分钟。体外扩增与滚环复制的同源性反映在发生的进化过程中。发生了最有可能由体内复制所假设的滑错配对机制引起的缺失事件。在我们的条件下,突变率很高,形成了一个分子准种,其中一个突变体缺乏内部发夹形成能力,因此在dGTP/dCTP缺乏的情况下超过了所有其他物种。