da Silva Danilo R, Gonzalez Claudio F, Lorca Graciela L
Department of Microbiology and Cell Science, Genetics Institute, Institute of Food and Agricultural Sciences, University of Florida.
J Extracell Biol. 2023 Jul;2(7). doi: 10.1002/jex2.101. Epub 2023 Jul 18.
Cells of all domains of life can secrete extracellular vesicles (EV). These secreted vesicles have been indicated as vehicles carrying molecules that facilitate intra- and inter-species interaction. N6.2, a bacterium used in probiotic preparations, has been shown to produce nano-sized EV. In the present work we used N6.2 EV, concentrated from exosome depleted MRS supernatant, to identify the uptake mechanisms of EV and the impact of the RNA cargo in the EV on the upregulation of the cellular response of βlox5 human pancreatic cells. Using eukaryotic uptake inhibitors, it was found that EV are internalized by the clathrin/dynamin mediated endocytosis pathway. Further co-localization experiments with the endosome markers RAB5, RAB7 and LAMP1 as well as calcein indicated that EV escape the endosome shortly after RAB7 fusion. Using the expression of the 2',5'-oligoadenylate synthetase (OAS) host pathway, previously identified as targeted by EV, we found that the host cellular response to the EV are dependent on the integrity of the external components of the EV as well as on the RNA cargo. Global transcriptome analysis was performed on EV and the bacterial whole cell. It was found that the RNA transcripts found within the EV largely represent the most abundantly transcribed genes in the bacterial cells such as those associated with protein synthesis and glycolysis. Further analysis showed an enrichment of smaller size transcripts as well as those encoding for membrane bound or extracellular proteins in 's EV.
所有生命域的细胞都能分泌细胞外囊泡(EV)。这些分泌的囊泡已被表明是携带促进种内和种间相互作用分子的载体。N6.2是一种用于益生菌制剂的细菌,已被证明能产生纳米级的EV。在本研究中,我们使用从去除外泌体的MRS上清液中浓缩得到的N6.2 EV,来确定EV的摄取机制以及EV中的RNA货物对βlox5人胰腺细胞细胞反应上调的影响。使用真核摄取抑制剂,发现EV通过网格蛋白/发动蛋白介导的内吞途径内化。进一步与内体标记物RAB5、RAB7和LAMP1以及钙黄绿素进行共定位实验表明,EV在RAB7融合后不久就从内体中逃逸。利用先前确定为受EV靶向的2',5'-寡腺苷酸合成酶(OAS)宿主途径的表达,我们发现宿主细胞对EV的反应取决于EV外部成分的完整性以及RNA货物。对EV和细菌全细胞进行了全局转录组分析。发现EV中发现的RNA转录本在很大程度上代表了细菌细胞中转录最丰富的基因,如那些与蛋白质合成和糖酵解相关的基因。进一步分析表明,在N6.2的EV中,较小尺寸的转录本以及编码膜结合或细胞外蛋白质的转录本有所富集。