1 Bioengineering Systems and Technologies, MIT Lincoln Laboratory, Lexington, MA, USA.
2 Synthetic Biology Center at MIT, Massachusetts Institute of Technology, Cambridge, MA, USA.
SLAS Technol. 2019 Jun;24(3):282-290. doi: 10.1177/2472630318825335. Epub 2019 Feb 15.
The advancement of synthetic biology requires the ability to create new DNA sequences to produce unique behaviors in biological systems. Automation is increasingly employed to carry out well-established assembly methods of DNA fragments in a multiplexed, high-throughput fashion, allowing many different configurations to be tested simultaneously. However, metrics are required to determine when automation is warranted based on factors such as assembly methodology, protocol details, and number of samples. The goal of our synthetic biology automation work is to develop and test protocols, hardware, and software to investigate and optimize DNA assembly through quantifiable metrics. We performed a parameter analysis of DNA assembly to develop a standardized, highly efficient, and reproducible MoClo protocol, suitable to be used both manually and with liquid-handling robots. We created a key DNA assembly metric (Q-metric) to characterize a given automation method's advantages over conventional manual manipulations with regard to researchers' highest-priority parameters: output, cost, and time. A software tool called Puppeteer was developed to formally capture these metrics, help define the assembly design, and provide human and robotic liquid-handling instructions. Altogether, we contribute to a growing foundation of standardizing practices, metrics, and protocols for automating DNA assembly.
合成生物学的发展需要能够创建新的 DNA 序列,以在生物系统中产生独特的行为。自动化技术越来越多地被用于以多路复用、高通量的方式执行成熟的 DNA 片段组装方法,从而可以同时测试许多不同的配置。但是,需要一些指标来确定何时需要自动化,这些指标基于组装方法、协议细节和样本数量等因素。我们合成生物学自动化工作的目标是开发和测试协议、硬件和软件,通过可量化的指标来研究和优化 DNA 组装。我们对 DNA 组装进行了参数分析,以开发一种标准化的、高效的、可重复的 MoClo 协议,该协议既适合手动操作,也适合使用液体处理机器人进行操作。我们创建了一个关键的 DNA 组装指标(Q 指标),用于描述给定自动化方法相对于传统手动操作在研究人员最优先考虑的参数方面的优势:产量、成本和时间。我们开发了一个名为 Puppeteer 的软件工具,用于正式捕获这些指标,帮助定义组装设计,并提供人机和机器人液体处理指令。总之,我们为自动化 DNA 组装的标准化实践、指标和协议做出了贡献。