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空肠弯曲杆菌中由第二位点突变引起的基因缺失突变体的运动缺陷。

Motility defects in Campylobacter jejuni defined gene deletion mutants caused by second-site mutations.

作者信息

de Vries Stefan P W, Gupta Srishti, Baig Abiyad, L'Heureux Joanna, Pont Elsa, Wolanska Dominika P, Maskell Duncan J, Grant Andrew J

机构信息

Department of Veterinary Medicine, University of Cambridge, Cambridge, UK.

出版信息

Microbiology (Reading). 2015 Dec;161(12):2316-27. doi: 10.1099/mic.0.000184. Epub 2015 Sep 18.

Abstract

Genetic variation due to mutation and phase variation has a considerable impact on the commensal and pathogenic behaviours of Campylobacter jejuni. In this study, we provide an example of how second-site mutations can interfere with gene function analysis in C. jejuni. Deletion of the flagellin B gene (flaB) in C. jejuni M1 resulted in mutant clones with inconsistent motility phenotypes. From the flaB mutant clones picked for further analysis, two were motile, one showed intermediate motility and two displayed severely attenuated motility. To determine the molecular basis of this differential motility, a genome resequencing approach was used. Second-site mutations were identified in the severely attenuated and intermediate motility flaB mutant clones: a TA-dinucleotide deletion in fliW and an A deletion in flgD, respectively. Restoration of WT fliW, using a newly developed genetic complementation system, confirmed that the second-site fliW mutation caused the motility defect as opposed to the primary deletion of flaB. This study highlights the importance of (i) screening multiple defined gene deletion mutant clones, (ii) genetic complementation of the gene deletion and ideally (iii) screening for second-site mutations that might interfere with the pathways/mechanisms under study.

摘要

由于突变和相变导致的基因变异对空肠弯曲菌的共生和致病行为有相当大的影响。在本研究中,我们提供了一个实例,说明第二位点突变如何干扰空肠弯曲菌的基因功能分析。空肠弯曲菌M1中鞭毛蛋白B基因(flaB)的缺失导致突变克隆的运动表型不一致。从挑选出来进行进一步分析的flaB突变克隆中,有两个具有运动能力,一个表现出中等运动能力,两个表现出严重减弱的运动能力。为了确定这种不同运动能力的分子基础,采用了全基因组重测序方法。在严重减弱运动能力和中等运动能力的flaB突变克隆中分别鉴定到了第二位点突变:fliW基因中的TA二核苷酸缺失和flgD基因中的A缺失。使用新开发的基因互补系统恢复野生型fliW,证实第二位点fliW突变导致了运动缺陷,而不是flaB的初次缺失。本研究强调了以下几点的重要性:(i)筛选多个明确的基因缺失突变克隆;(ii)对基因缺失进行遗传互补,理想情况下(iii)筛选可能干扰所研究途径/机制的第二位点突变。

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