Identification of common sequence motifs shared exclusively among selectively packed exosomal pathogenic microRNAs

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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