Torella Joseph P, Lienert Florian, Boehm Christian R, Chen Jan-Hung, Way Jeffrey C, Silver Pamela A
Department of Systems Biology, Harvard Medical School, Boston, Massachusetts, USA.
1] Department of Systems Biology, Harvard Medical School, Boston, Massachusetts, USA. [2] Wyss Institute for Biologically Inspired Engineering, Harvard University, Boston, Massachusetts, USA.
Nat Protoc. 2014 Sep;9(9):2075-89. doi: 10.1038/nprot.2014.145. Epub 2014 Aug 7.
Recombination-based DNA construction methods, such as Gibson assembly, have made it possible to easily and simultaneously assemble multiple DNA parts, and they hold promise for the development and optimization of metabolic pathways and functional genetic circuits. Over time, however, these pathways and circuits have become more complex, and the increasing need for standardization and insulation of genetic parts has resulted in sequence redundancies--for example, repeated terminator and insulator sequences--that complicate recombination-based assembly. We and others have recently developed DNA assembly methods, which we refer to collectively as unique nucleotide sequence (UNS)-guided assembly, in which individual DNA parts are flanked with UNSs to facilitate the ordered, recombination-based assembly of repetitive sequences. Here we present a detailed protocol for UNS-guided assembly that enables researchers to convert multiple DNA parts into sequenced, correctly assembled constructs, or into high-quality combinatorial libraries in only 2-3 d. If the DNA parts must be generated from scratch, an additional 2-5 d are necessary. This protocol requires no specialized equipment and can easily be implemented by a student with experience in basic cloning techniques.
基于重组的DNA构建方法,如吉布森组装法,使得轻松且同时组装多个DNA片段成为可能,它们为代谢途径和功能性遗传电路的开发与优化带来了希望。然而,随着时间的推移,这些途径和电路变得更加复杂,对遗传元件标准化和隔离的需求日益增加,导致了序列冗余——例如,重复的终止子和绝缘子序列——这使得基于重组的组装变得复杂。我们和其他人最近开发了DNA组装方法,我们将其统称为独特核苷酸序列(UNS)引导的组装,其中单个DNA片段两侧带有UNS,以促进重复序列的有序、基于重组的组装。在这里,我们展示了一个详细的UNS引导组装方案,使研究人员能够在仅2-3天内将多个DNA片段转化为测序的、正确组装的构建体,或转化为高质量的组合文库。如果DNA片段必须从头生成,则还需要额外的2-5天。该方案不需要专门的设备,有基本克隆技术经验的学生可以轻松实施。