Department of Fundamental Microbiology, University of Lausanne, 1015 Lausanne, Switzerland.
Nucleic Acids Res. 2023 Mar 21;51(5):2345-2362. doi: 10.1093/nar/gkad024.
Conjugation of DNA relies on multicomponent protein complexes bridging two bacterial cytoplasmic compartments. Whereas plasmid conjugation systems have been well documented, those of integrative and conjugative elements (ICEs) have remained poorly studied. We characterize here the conjugation system of the ICEclc element in Pseudomonas putida UWC1 that is a model for a widely distributed family of ICEs. By in frame deletion and complementation, we show the importance on ICE transfer of 22 genes in a 20-kb conserved ICE region. Protein comparisons recognized seven homologs to plasmid type IV secretion system components, another six homologs to frequent accessory proteins, and the rest without detectable counterparts. Stationary phase imaging of P. putida ICEclc with in-frame fluorescent protein fusions to predicted type IV components showed transfer-competent cell subpopulations with multiple fluorescent foci, largely overlapping in dual-labeled subcomponents, which is suggestive for multiple conjugation complexes per cell. Cross-dependencies between subcomponents in ICE-type IV secretion system assembly were revealed by quantitative foci image analysis in a variety of ICEclc mutant backgrounds. In conclusion, the ICEclc family presents an evolutionary distinct type IV conjugative system with transfer competent cells specialized in efficient transfer.
DNA 的结合依赖于连接两个细菌细胞质隔室的多成分蛋白复合物。尽管质粒结合系统已有详细的记录,但整合和共轭元件(ICEs)的系统仍然研究甚少。我们在这里描述了假单胞菌 UWC1 中 ICEclc 元件的结合系统,该系统是广泛分布的 ICE 家族的模型。通过框内缺失和互补,我们显示了在 20kb 保守 ICE 区域内的 22 个基因对 ICE 转移的重要性。蛋白比较识别出 7 个与质粒 IV 型分泌系统成分的同源物,另外 6 个与常见辅助蛋白的同源物,其余的则没有可检测到的同源物。用预测的 IV 型成分的框内荧光蛋白融合物对假单胞菌 ICEclc 的静止期成像显示,具有多个荧光焦点的转移能力细胞亚群,在双标记的亚成分中大部分重叠,这表明每个细胞中有多个结合复合物。通过在各种 ICEclc 突变背景下的定量焦点图像分析,揭示了 ICE 型 IV 分泌系统组装中各亚成分之间的交叉依赖性。总之,ICEclc 家族呈现出一种进化独特的 IV 型共轭系统,具有专门用于高效转移的转移能力细胞。