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Isolation of microRNAs from Tick Ex Vivo Salivary Gland Cultures and Extracellular Vesicles
Published on: April 6, 2022
Identification of common sequence motifs shared exclusively among selectively packed exosomal pathogenic microRNAs
Abstract:
We previously reported that microRNA (miR)23a and miR30b are selectively sorted into rickettsia-infected, endothelial cell-derived exosomes ( R -ECExos). Yet, the mechanism remains unknown. The number of cases of spotted fever rickettsioses has been increasing in recent years, and infections with these bacteria cause life-threatening diseases by targeting brain and lung tissues. Therefore, the aim of the present study is to continue to dissect the molecular mechanism underlying R -ECExos-induced barrier dysfunction of normal recipient microvascular endothelial cells (MECs), depending on their exosomal RNA cargos. Rickettsiae are transmitted to human hosts by the bite of an infected tick into the skin. In the present study we demonstrate that treatment with R -ECExos, which were derived from spotted fever group R parkeri infected human dermal MECs, induced disruptions of the paracellular adherens junctional protein VE-cadherin and breached the paracellular barrier function in recipient pulmonary MECs (PMECs) in an exosomal RNA-dependent manner. Similarly, we did not detect different levels of miRs in parent dermal MECs following rickettsial infections. However, we demonstrated that the microvasculopathy-relevant miR23a-27a-24 cluster and miR30b are selectively enriched in R -ECExos. Bioinformatic analysis revealed that common sequence motifs are shared exclusively among the exosomal, selectively-enriched miR23a cluster and miR30b at different levels. Taken together, these data warrant further functional identification and characterization of a single, bipartition, or tripartition among ACA, UCA, and CAG motifs that guide recognition of microvasculopathy-relevant miR23a-27a-24 and miR30b, and subsequently results in their selective enrichments in R -ECExos.
Insights
MicroRNAs (miRs) selectively enter exosomes from rickettsia-infected cells, disrupting endothelial barriers. Specific sequence motifs guide the enrichment of miR23a and miR30b in these exosomes, impacting vascular function.
Area of Science:
- Cell Biology
- Molecular Biology
- Microbiology
Background:
- Spotted fever rickettsioses are increasing, causing severe disease by affecting brain and lung tissues.
- Rickettsia-infected endothelial cell-derived exosomes (R-ECExos) disrupt recipient cell barriers, but the mechanism is unclear.
- MicroRNAs (miRs) are implicated in exosome cargo sorting and cellular communication.
Approach:
- Investigated the role of exosomal RNA in R-ECExos-induced microvascular endothelial cell (MEC) barrier dysfunction.
- Analyzed microRNA content of R-ECExos derived from Rickettsia parkeri-infected human dermal MECs.
- Utilized bioinformatic analysis to identify sequence motifs guiding selective microRNA enrichment in exosomes.
Key Points:
- R-ECExos from R. parkeri-infected dermal MECs disrupted VE-cadherin and breached recipient pulmonary MEC (PMEC) barrier function in an exosomal RNA-dependent manner.
- The microvasculopathy-relevant miR23a-27a-24 cluster and miR30b were selectively enriched in R-ECExos.
- Common sequence motifs (ACA, UCA, CAG) were identified in the selectively enriched miRs, suggesting a role in their sorting.
Conclusions:
- Exosomal RNA cargo, specifically miR23a and miR30b, plays a critical role in R-ECExos-induced endothelial barrier dysfunction.
- Identified sequence motifs provide a basis for understanding the selective enrichment mechanism of these miRs in exosomes.
- Further research is warranted to functionally characterize these motifs and their role in microvasculopathy.
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