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用于快速推进哺乳动物系统工程的EMMA组装的自动化与扩展

Automation and Expansion of EMMA Assembly for Fast-Tracking Mammalian System Engineering.

作者信息

James Joshua S, Jones Sally, Martella Andrea, Luo Yisha, Fisher David I, Cai Yizhi

机构信息

Manchester Institute of Biotechnology, University of Manchester, 131 Princess Street, Manchester M1 7DN, U.K.

Genome Institute of Singapore, Agency for Science, Technology and Research, Singapore 138672, Singapore.

出版信息

ACS Synth Biol. 2022 Feb 18;11(2):587-595. doi: 10.1021/acssynbio.1c00330. Epub 2022 Jan 21.

DOI:10.1021/acssynbio.1c00330
PMID:35061373
Abstract

With applications from functional genomics to the production of therapeutic biologics, libraries of mammalian expression vectors have become a cornerstone of modern biological investigation and engineering. Multiple modular vector platforms facilitate the rapid design and assembly of vectors. However, such systems approach a technical bottleneck when a library of bespoke vectors is required. Utilizing the flexibility and robustness of the Extensible Mammalian Modular Assembly (EMMA) toolkit, we present an automated workflow for the library-scale design, assembly, and verification of mammalian expression vectors. Vector design is simplified using our EMMA computer-aided design tool (EMMA-CAD), while the precision and speed of acoustic droplet ejection technology are applied in vector assembly. Our pipeline facilitates significant reductions in both reagent usage and researcher hands-on time compared with manual assembly, as shown by system Q-metrics. To demonstrate automated EMMA performance, we compiled a library of 48 distinct plasmid vectors encoding either CRISPR interference or activation modalities. Characterization of the workflow parameters shows that high assembly efficiency is maintained across vectors of various sizes and design complexities. Our system also performs strongly compared with manual assembly efficiency benchmarks. Alongside our automated pipeline, we present a straightforward strategy for integrating gRNA and Cas modules into the EMMA platform, enabling the design and manufacture of valuable genome editing resources.

摘要

从功能基因组学应用到治疗性生物制品的生产,哺乳动物表达载体文库已成为现代生物学研究和工程的基石。多个模块化载体平台有助于载体的快速设计和组装。然而,当需要定制载体文库时,此类系统面临技术瓶颈。利用可扩展哺乳动物模块化组装(EMMA)工具包的灵活性和稳健性,我们提出了一种用于哺乳动物表达载体文库规模设计、组装和验证的自动化工作流程。使用我们的EMMA计算机辅助设计工具(EMMA-CAD)简化载体设计,同时在载体组装中应用声滴喷射技术的精度和速度。如系统Q指标所示,与手动组装相比,我们的流程显著减少了试剂用量和研究人员的实际操作时间。为了展示EMMA自动化性能,我们构建了一个包含48种不同质粒载体的文库,这些载体编码CRISPR干扰或激活模式。工作流程参数的表征表明,在各种大小和设计复杂度的载体中都能保持高组装效率。与手动组装效率基准相比,我们的系统表现也很出色。除了我们的自动化流程,我们还提出了一种将gRNA和Cas模块整合到EMMA平台的直接策略,从而能够设计和制造有价值的基因组编辑资源。

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