Seeger Christian, Dyrhage Karl, Näslund Kristina, Andersson Siv G E
Molecular Evolution, Department of Cell and Molecular Biology, Science for Life Laboratory, Biomedical Centre, Uppsala University, 752 36 Uppsala, Sweden.
Microlife. 2023 Aug 29;4:uqad037. doi: 10.1093/femsml/uqad037. eCollection 2023.
Extracellularly released particles, including membrane vesicles, have increasingly been recognized as important for bacterial community functions and host-interaction processes, but their compositions and functional roles differ between species and also between strains of the same species. In this study, we have determined the composition of membrane vesicles and protein particles identified in the cell-free pellets of two strains of , a defensive symbiont of honeybees. The membrane vesicles were separated from the extracellular particles using density gradient ultracentrifugation. The peaks of the RNA and protein distributions were separated from each other and the highest concentration of RNA was observed in the fractions that contained the membrane vesicles while the highest protein concentration coincided with the fractions that contained extracellular particles. A comparative proteomics analysis by LC-MS/MS showed that 37 proteins with type-I signal peptides were consistently identified across the fractionated samples obtained from the cell-free pellets, of which 29 were orthologs detected in both strains. Functional predictions of the extracellular proteins revealed the presence of glycoside hydrolases, glycosyltransferases, giant proteins and peptidases. The extracellular transcriptomes mapped to a broad set of genes with a similar functional profile as the whole cell transcriptome. This study provides insights into the composition of membrane vesicles and extracellular proteins of a bee-associated symbiont.
包括膜泡在内的细胞外释放颗粒,越来越被认为对细菌群落功能和宿主相互作用过程很重要,但其组成和功能作用在不同物种之间以及同一物种的不同菌株之间存在差异。在本研究中,我们确定了蜜蜂防御性共生菌两株菌株无细胞沉淀中鉴定出的膜泡和蛋白质颗粒的组成。使用密度梯度超速离心法将膜泡与细胞外颗粒分离。RNA和蛋白质分布的峰值彼此分离,在含有膜泡的组分中观察到最高浓度的RNA,而最高蛋白质浓度与含有细胞外颗粒的组分一致。通过LC-MS/MS进行的比较蛋白质组学分析表明,在从无细胞沉淀获得的分级样品中一致鉴定出37种具有I型信号肽的蛋白质,其中29种是在两株菌株中均检测到的直系同源物。细胞外蛋白质的功能预测显示存在糖苷水解酶、糖基转移酶、巨大蛋白质和肽酶。细胞外转录组映射到一组广泛的基因,其功能谱与全细胞转录组相似。本研究为蜜蜂相关共生菌的膜泡和细胞外蛋白质组成提供了见解。