Precise Sequential DNA Ligation on A Solid Substrate: Solid-Based Rapid Sequential Ligation of Multiple DNA Molecules

E. Takita, K. Kohda, Hajime Tomatsu, S. Hanano, Kanami Moriya, T. Hosouchi, N. Sakurai, Hideyuki Suzuki, A. Shinmyō, D. Shibata
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Abstract

Ligation, the joining of DNA fragments, is a fundamental procedure in molecular cloning and is indispensable to the production of genetically modified organisms that can be used for basic research, the applied bios-ciences, or both. Given that many genes cooperate in various pathways, incorporating multiple gene cassettes in tandem in a transgenic DNA construct for the purpose of genetic modification is often necessary when generating organisms that produce multiple foreign gene products. Here, we describe a novel method, designated PRESSO (precise sequential DNA ligation on a solid substrate), for the tandem ligation of multiple DNA fragments. We amplified donor DNA fragments with non-palindromic ends, and ligated the fragment to acceptor DNA fragments on solid beads. After the final donor DNA fragments, which included vector sequences, were joined to the construct that contained the array of fragments, the ligation product (the construct) was thereby released from the beads via digestion with a rare-cut meganuclease; the freed linear construct was circularized via an intra-molecular ligation. PRESSO allowed us to rapidly and efficiently join multiple genes in an optimized order and orientation. This method can overcome many technical challenges in functional genomics during the post-sequencing generation.
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在固体底物上精确的序列DNA连接:多个DNA分子的基于固体的快速序列连接
连接DNA片段是分子克隆的一个基本步骤,对于生产可用于基础研究、应用生物科学或两者兼而有之的转基因生物是必不可少的。考虑到许多基因在不同的途径中合作,在产生产生多种外源基因产物的生物体时,为了进行基因修饰,将多个基因盒串联在转基因DNA结构中往往是必要的。在这里,我们描述了一种新的方法,指定的PRESSO(精确顺序DNA连接在固体底物上),用于串联连接多个DNA片段。我们扩增了具有非回文末端的供体DNA片段,并将片段连接到固体珠上的受体DNA片段。在最终的供体DNA片段(包括载体序列)与包含片段阵列的构建体连接后,连接产物(构建体)因此通过稀有切割的巨核酶消化从珠子中释放出来;释放的线性结构通过分子内连接循环。PRESSO允许我们以优化的顺序和方向快速有效地连接多个基因。该方法可以克服功能基因组学在测序后生成过程中的许多技术挑战。
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