重组工程
生物
遗传学
同源重组
体外重组
基因组
基因组文库
细菌人工染色体
克隆(编程)
基因
分子克隆
计算生物学
互补DNA
肽序列
计算机科学
程序设计语言
作者
Jun Fu,Xiaoying Bian,Shengbaio Hu,Hailong Wang,Fan Huang,Philipp Martin Seibert,Alberto Plaza,Liqiu Xia,Rolf Müller,A. Francis Stewart,Youming Zhang
摘要
Functional genomics requires facile methods to recover sequences of interest. Fu et al. show that the phage proteins RecE and RecT mediate recombination between linear DNA fragments and can facilitate natural product discovery. Functional analysis of genome sequences requires methods for cloning DNA of interest. However, existing methods, such as library cloning and screening, are too demanding or inefficient for high-throughput application to the wealth of genomic data being delivered by massively parallel sequencing. Here we describe direct DNA cloning based on the discovery that the full-length Rac prophage protein RecE and its partner RecT mediate highly efficient linear-linear homologous recombination mechanistically distinct from conventional recombineering mediated by Redαβ from lambda phage or truncated versions of RecET. We directly cloned all ten megasynthetase gene clusters (each 10–52 kb in length) from Photorhabdus luminescens into expression vectors and expressed two of them in a heterologous host to identify the metabolites luminmycin A and luminmide A/B. We also directly cloned cDNAs and exactly defined segments from bacterial artificial chromosomes. Direct cloning with full-length RecE expands the DNA engineering toolbox and will facilitate bioprospecting for natural products.
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