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Directed evolution combined with synthetic biology strategies expedite semi-rational engineering of genes and genomes

机译:定向进化结合合成生物学策略可加快基因和基因组的半理性工程

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摘要

Owing to our limited understanding of the relationship between sequence and function and the interaction between intracellular pathways and regulatory systems, the rational design of enzyme-coding genes and de novo assembly of a brand-new artificial genome for a desired functionality or phenotype are difficult to achieve. As an alternative approach, directed evolution has been widely used to engineer genomes and enzyme-coding genes. In particular, significant developments toward DNA synthesis, DNA assembly (in vitro or in vivo), recombination-mediated genetic engineering, and high-throughput screening techniques in the field of synthetic biology have been matured and widely adopted, enabling rapid semi-rational genome engineering to generate variants with desired properties. In this commentary, these novel tools and their corresponding applications in the directed evolution of genomes and enzymes are discussed. Moreover, the strategies for genome engineering and rapid in vitro enzyme evolution are also proposed.
机译:由于我们对序列与功能之间的关系以及细胞内途径与调节系统之间的相互作用的了解有限,因此难以对酶编码基因进行合理的设计以及针对所需功能或表型进行全新人工基因组的从头组装。实现。作为一种替代方法,定向进化已被广泛用于工程化基因组和酶编码基因。特别是,在合成生物学领域,DNA合成,DNA组装(体外或体内),重组介导的基因工程和高通量筛选技术的重大发展已经成熟并被广泛采用,从而可以实现快速的半理性基因组工程以生成具有所需属性的变体。在这篇评论中,讨论了这些新颖的工具及其在基因组和酶的定向进化中的相应应用。此外,还提出了用于基因组工程和快速体外酶进化的策略。

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