基因组
合成生物学
生物
基因组工程
计算生物学
噬菌体展示
基因
突变体
细菌基因组大小
噬菌体
大肠杆菌
噬菌体
遗传学
基因组编辑
抗体
作者
Antoine Lévrier,Ioannis Karpathakis,Bruce Nash,Steven D. Bowden,Ariel B. Lindner,Vincent Noireaux
标识
DOI:10.1038/s41467-024-46585-1
摘要
Abstract Bacteriophages constitute an invaluable biological reservoir for biotechnology and medicine. The ability to exploit such vast resources is hampered by the lack of methods to rapidly engineer, assemble, package genomes, and select phages. Cell-free transcription-translation (TXTL) offers experimental settings to address such a limitation. Here, we describe PHage Engineering by In vitro Gene Expression and Selection (PHEIGES) using T7 phage genome and Escherichia coli TXTL. Phage genomes are assembled in vitro from PCR-amplified fragments and directly expressed in batch TXTL reactions to produce up to 10 11 PFU/ml engineered phages within one day. We further demonstrate a significant genotype-phenotype linkage of phage assembly in bulk TXTL. This enables rapid selection of phages with altered rough lipopolysaccharides specificity from phage genomes incorporating tail fiber mutant libraries. We establish the scalability of PHEIGES by one pot assembly of such mutants with fluorescent gene integration and 10% length-reduced genome.
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