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A Rapid and Simple Method for DNA Engineering Using Cycled Ligation Assembly

机译:使用循环连接组装的DNA工程快速简便方法

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摘要

DNA assembly techniques have developed rapidly, enabling efficient construction of complex constructs that would be prohibitively difficult using traditional restriction-digest based methods. Most of the recent methods for assembling multiple DNA fragments in vitro suffer from high costs, complex set-ups, and diminishing efficiency when used for more than a few DNA segments. Here we present a cycled ligation-based DNA assembly protocol that is simple, cheap, efficient, and powerful. The method employs a thermostable ligase and short Scaffold Oligonucleotide Connectors (SOCs) that are homologous to the ends and beginnings of two adjacent DNA sequences. These SOCs direct an exponential increase in the amount of correctly assembled product during a reaction that cycles between denaturing and annealing/ligating temperatures. Products of early cycles serve as templates for later cycles, allowing the assembly of many sequences in a single reaction. To demonstrate the method’s utility, we directed the assembly of twelve inserts, in one reaction, into a transformable plasmid. All the joints were precise, and assembly was scarless in the sense that no nucleotides were added or missing at junctions. Simple, efficient, and low-cost cycled ligation assemblies will facilitate wider use of complex genetic constructs in biomedical research.
机译:DNA组装技术发展迅速,可以有效构建复杂的构建体,而使用传统的基于限制酶切消化的方法将难以实现。当用于多个DNA片段时,大多数用于体外组装多个DNA片段的最新方法都存在高成本,复杂的设置以及效率降低的问题。在这里,我们提出了一种简单,便宜,高效且功能强大的基于循环连接的DNA组装方案。该方法采用了热稳定的连接酶和短支架寡核苷酸连接子(SOC),它们与两个相邻DNA序列的末端和起点同源。这些SOC指导变性和退火/连接温度之间循环的反应过程中正确组装的产品数量呈指数增长。早期循环的产物用作后续循环的模板,从而允许在单个反应中组装许多序列。为了证明该方法的实用性,我们将一个反应中的12个插入片段组装成一个可转化的质粒。所有关节都是精确的,并且在连接处没有核苷酸被添加或丢失的意义上,组装是无缝的。简单,高效和低成本的循环连接组装将有助于在生物医学研究中更广泛地使用复杂的遗传构建体。

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