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基于 att 位点的重组报告系统用于基因组工程和合成 DNA 组装。

An att site-based recombination reporter system for genome engineering and synthetic DNA assembly.

机构信息

Unité Plasticité du Génome Bactérien, Département Génomes et Génétique, Institut Pasteur, 75015, Paris, France.

UMR3525, Centre National de la Recherche Scientifique, 75015, Paris, France.

出版信息

BMC Biotechnol. 2017 Jul 14;17(1):62. doi: 10.1186/s12896-017-0382-1.

Abstract

BACKGROUND

Direct manipulation of the genome is a widespread technique for genetic studies and synthetic biology applications. The tyrosine and serine site-specific recombination systems of bacteriophages HK022 and ΦC31 are widely used for stable directional exchange and relocation of DNA sequences, making them valuable tools in these contexts. We have developed site-specific recombination tools that allow the direct selection of recombination events by embedding the attB site from each system within the β-lactamase resistance coding sequence (bla).

RESULTS

The HK and ΦC31 tools were developed by placing the attB sites from each system into the signal peptide cleavage site coding sequence of bla. All possible open reading frames (ORFs) were inserted and tested for recombination efficiency and bla activity. Efficient recombination was observed for all tested ORFs (3 for HK, 6 for ΦC31) as shown through a cointegrate formation assay. The bla gene with the embedded attB site was functional for eight of the nine constructs tested.

CONCLUSIONS

The HK/ΦC31 att-bla system offers a simple way to directly select recombination events, thus enhancing the use of site-specific recombination systems for carrying out precise, large-scale DNA manipulation, and adding useful tools to the genetics toolbox. We further show the power and flexibility of bla to be used as a reporter for recombination.

摘要

背景

直接基因组操作是遗传研究和合成生物学应用中广泛使用的技术。噬菌体 HK022 和 ΦC31 的酪氨酸和丝氨酸位点特异性重组系统广泛用于稳定的定向交换和 DNA 序列的重新定位,使其在这些方面成为有价值的工具。我们开发了位点特异性重组工具,通过将每个系统的 attB 位点嵌入β-内酰胺酶抗性编码序列(bla)中,允许直接选择重组事件。

结果

HK 和 ΦC31 工具是通过将每个系统的 attB 位点放置在 bla 的信号肽切割位点编码序列中来开发的。插入并测试了所有可能的开放阅读框(ORF),以确定重组效率和 bla 活性。通过共整合形成测定观察到所有测试的 ORF(HK 为 3,ΦC31 为 6)都具有高效的重组。在所测试的九个构建体中的八个中,带有嵌入式 attB 位点的 bla 基因具有功能。

结论

HK/ΦC31 att-bla 系统提供了一种直接选择重组事件的简单方法,从而增强了位点特异性重组系统用于进行精确、大规模 DNA 操作的用途,并为遗传工具箱添加了有用的工具。我们进一步展示了 bla 作为重组报告基因的强大功能和灵活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9c4/5512741/533490518f24/12896_2017_382_Fig1_HTML.jpg

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