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BASIC:一种简单而精确的模块化 DNA 组装方法。

BASIC: A Simple and Accurate Modular DNA Assembly Method.

机构信息

Department of Life Sciences, Imperial College London, London, UK.

Imperial College Centre for Synthetic Biology, Imperial College London, London, UK.

出版信息

Methods Mol Biol. 2020;2205:239-253. doi: 10.1007/978-1-0716-0908-8_14.

Abstract

Biopart Assembly Standard for Idempotent Cloning (BASIC) is a simple, robust, and highly accurate DNA assembly method, which provides 99% correct assemblies for a typical four-part assembly, enabling high efficiency cloning workflows (Storch et al., ACS Synth Biol, https://doi.org/10.1021/sb500356 , 2015). BASIC employs standardised DNA linkers to combine bioparts, stored in the universal BASIC format. Once a new biopart is formatted into BASIC standard, defined by flanking 18 bp prefix and suffix sequences, it can be placed at any position and in any context within a designed BASIC assembly. This modularity of the BASIC approach is further enhanced by a range of functional linkers, including genetic elements like ribosomal binding sites (RBS) and peptide linkers. The method has a single tier format, whereby any BASIC assembly can create a new composite BASIC part in the same format used for the original parts; it can thus enter a subsequent BASIC assembly without the need for reformatting or changes to the workflow. This unique idempotent cloning mechanism allows for the assembly of constructs in multiple, conceptionally simple hierarchical rounds. Combined with its high accuracy and robustness, this makes BASIC a versatile assembly method for combinatorial and complex assemblies both at bench and biofoundry scale. The single universal storage format of BASIC parts enables compressed universal biopart libraries that promote sharing of parts and reproducible assembly strategies across labs, supporting efforts to improve reproducibility. In comparison with other DNA assembly standards and methods, BASIC offers a simple robust protocol, relies on a single tier format, provides for easy hierarchical assembly, and is highly accurate for up to seven parts per assembly round (Casini et al., Nat Rev Mol Cell Biol. https://doi.org/10.1038/nrm4014 , 2015).

摘要

生物部件组装标准(BASIC)是一种简单、稳健且高度准确的 DNA 组装方法,它为典型的四部件组装提供了 99%的正确组装,从而实现了高效率的克隆工作流程(Storch 等人,ACS 合成生物学,https://doi.org/10.1021/sb500356 ,2015)。BASIC 采用标准化的 DNA 接头将生物部件组合在一起,这些生物部件以通用的 BASIC 格式存储。一旦新的生物部件被格式化为 BASIC 标准,即由侧翼的 18bp 前缀和后缀序列定义,它就可以放置在设计的 BASIC 组装中的任何位置和任何上下文中。BASIC 方法的这种模块化通过一系列功能接头得到进一步增强,包括核糖体结合位点(RBS)和肽接头等遗传元件。该方法具有单层格式,即任何 BASIC 组装都可以在与原始部件相同的格式中创建新的复合 BASIC 部件;因此,它可以进入下一个 BASIC 组装,而无需重新格式化或更改工作流程。这种独特的幂等克隆机制允许在多个概念上简单的层次轮次中组装构建体。结合其高精度和稳健性,这使得 BASIC 成为组合和复杂组装的通用组装方法,无论是在实验室规模还是生物工厂规模。BASIC 部件的单一通用存储格式可以实现压缩的通用生物部件库,促进部件共享和可重复的组装策略在实验室之间的共享,支持提高可重复性的努力。与其他 DNA 组装标准和方法相比,BASIC 提供了一种简单稳健的方案,依赖于单层格式,易于进行层次组装,并且对于每一轮组装高达七个部件具有高度准确性(Casini 等人,自然评论分子细胞生物学,https://doi.org/10.1038/nrm4014 ,2015)。

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