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质粒转移起点处的 DNA 结构表明其潜在的转移范围。

DNA structure at the plasmid origin-of-transfer indicates its potential transfer range.

机构信息

Institute of Metagenomics and Microbial Technologies, 1000, Ljubljana, Slovenia.

Faculty of Health Sciences, University of Primorska, 6320, Izola, Slovenia.

出版信息

Sci Rep. 2018 Jan 29;8(1):1820. doi: 10.1038/s41598-018-20157-y.

Abstract

Horizontal gene transfer via plasmid conjugation enables antimicrobial resistance (AMR) to spread among bacteria and is a major health concern. The range of potential transfer hosts of a particular conjugative plasmid is characterised by its mobility (MOB) group, which is currently determined based on the amino acid sequence of the plasmid-encoded relaxase. To facilitate prediction of plasmid MOB groups, we have developed a bioinformatic procedure based on analysis of the origin-of-transfer (oriT), a merely 230 bp long non-coding plasmid DNA region that is the enzymatic substrate for the relaxase. By computationally interpreting conformational and physicochemical properties of the oriT region, which facilitate relaxase-oriT recognition and initiation of nicking, MOB groups can be resolved with over 99% accuracy. We have shown that oriT structural properties are highly conserved and can be used to discriminate among MOB groups more efficiently than the oriT nucleotide sequence. The procedure for prediction of MOB groups and potential transfer range of plasmids was implemented using published data and is available at http://dnatools.eu/MOB/plasmid.html .

摘要

水平基因转移通过质粒接合使抗菌药物耐药性 (AMR) 在细菌中传播,这是一个主要的健康问题。特定可移动性 (MOB) 组的接合质粒的潜在转移宿主范围的特点是其移动性 (MOB) 组,目前基于质粒编码的松弛酶的氨基酸序列来确定。为了促进质粒 MOB 组的预测,我们开发了一种基于转移起点 (oriT) 分析的生物信息学程序,oriT 是一个仅 230bp 长的非编码质粒 DNA 区域,是松弛酶的酶促底物。通过计算解释 oriT 区域的构象和物理化学性质,这些性质有助于松弛酶-oriT 的识别和切口的起始,MOB 组可以以超过 99%的准确率得到解决。我们已经表明,oriT 的结构特性高度保守,并且可以比 oriT 核苷酸序列更有效地用于区分 MOB 组。用于预测 MOB 组和质粒潜在转移范围的程序是使用已发表的数据实现的,并可在 http://dnatools.eu/MOB/plasmid.html 上获得。

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