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噬菌体编码的 I 型限制酶抑制剂 Ocr 的表达和纯化工具的生成。

Generation of tools for expression and purification of the phage-encoded Type I restriction enzyme inhibitor, Ocr.

机构信息

The Roslin Institute, University of Edinburgh, Easter Bush Campus, Midlothian, Scotland, EH25 9RG, UK.

EaStCHEM School of Chemistry, University of Edinburgh, The King's Buildings, Edinburgh, EH9 3FJ, UK.

出版信息

Microbiology (Reading). 2024 Jul;170(7). doi: 10.1099/mic.0.001465.

Abstract

DNA manipulation is an essential tool in molecular microbiology research that is dependent on the ability of bacteria to take up and preserve foreign DNA by horizontal gene transfer. This process can be significantly impaired by the activity of bacterial restriction modification systems; bacterial operons comprising paired enzymatic activities that protectively methylate host DNA, while cleaving incoming unmodified foreign DNA. Ocr is a phage-encoded protein that inhibits Type I restriction modification systems, the addition of which significantly improves bacterial transformation efficiency. We recently established an improved and highly efficient transformation protocol for the important human pathogen group A using commercially available recombinant Ocr protein, manufacture of which has since been discontinued. In order to ensure the continued availability of Ocr protein within the research community, we have generated tools and methods for in-house Ocr production and validated the activity of the purified recombinant protein.

摘要

DNA 操作是分子微生物学研究中的一项基本工具,该研究依赖于细菌通过水平基因转移摄取和保存外源 DNA 的能力。细菌限制修饰系统的活性会显著损害这一过程;细菌操纵子由成对的酶活性组成,这些酶活性保护性地甲基化宿主 DNA,同时切割进入的未修饰的外源 DNA。Ocr 是一种噬菌体编码的蛋白,可抑制 I 型限制修饰系统,添加 Ocr 可显著提高细菌转化效率。我们最近使用市售重组 Ocr 蛋白为重要的人类病原体 A 组建立了一种改良的、高效的转化方案,但该蛋白的生产现已停产。为确保 Ocr 蛋白在研究界的持续供应,我们已经开发了用于内部 Ocr 生产的工具和方法,并验证了纯化重组蛋白的活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0ae/11317969/4953095e9aba/mic-170-01465-g001.jpg

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