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Start-Stop Assembly: a functionally scarless DNA assembly system optimized for metabolic engineering

机译:启停组装:功能完善的DNA组装系统针对代谢工程进行了优化

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摘要

DNA assembly allows individual DNA constructs or libraries to be assembled quickly and reliably. Most methods are either: (i) Modular, easily scalable and suitable for combinatorial assembly, but leave undesirable ‘scar’ sequences; or (ii) bespoke (non-modular), scarless but less suitable for construction of combinatorial libraries. Both have limitations for metabolic engineering. To overcome this trade-off we devised Start-Stop Assembly, a multi-part, modular DNA assembly method which is both functionally scarless and suitable for combinatorial assembly. Crucially, 3 bp overhangs corresponding to start and stop codons are used to assemble coding sequences into expression units, avoiding scars at sensitive coding sequence boundaries. Building on this concept, a complete DNA assembly framework was designed and implemented, allowing assembly of up to 15 genes from up to 60 parts (or mixtures); monocistronic, operon-based or hybrid configurations; and a new streamlined assembly hierarchy minimizing the number of vectors. Only one destination vector is required per organism, reflecting our optimization of the system for metabolic engineering in diverse organisms. Metabolic engineering using Start-Stop Assembly was demonstrated by combinatorial assembly of carotenoid pathways in Escherichia coli resulting in a wide range of carotenoid production and colony size phenotypes indicating the intended exploration of design space.
机译:DNA组装可快速可靠地组装单个DNA构建体或文库。大多数方法是:(i)模块化,易于扩展且适合组合组装,但留下了不希望的“疤痕”序列;或(ii)定制(非模块化),无痕但不太适合组合库的构建。两者都具有代谢工程的局限性。为了克服这种折衷,我们设计了Start-Stop Assembly(起止组装),这是一种多部件的模块化DNA组装方法,在功能上无懈可击,并且适合组合组装。至关重要的是,与起始密码子和终止密码子相对应的3 bp突出端可用于将编码序列组装成表达单元,从而避免了敏感编码序列边界处的疤痕。在此概念的基础上,设计并实施了一个完整的DNA组装框架,可以从多达60个部分(或混合物)中组装多达15个基因。单顺反子,基于操纵子或混合的配置;新的精简程序集层次结构可最大程度地减少向量数量。每个生物仅需要一个目标载体,这反映了我们对各种生物中的代谢工程系统的优化。通过在大肠杆菌中类胡萝卜素途径的组合组装,证明了使用启停组装的代谢工程,这导致了广泛的类胡萝卜素生产和菌落大小表型,表明了对设计空间的预期探索。

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