Plasma Exosomal microRNA Profile Reveals miRNA 148a-3p Downregulation in the Mucosal-Dominant Variant of Pemphigus Vulgaris.
Anna ValentinoStefania LeuciUmberto GalderisiGianrico SpagnuoloMichele Davide MignognaGianfranco PelusoAnna CalarcoPublished in: International journal of molecular sciences (2023)
The mucosal-dominant variant of pemphigus vulgaris (MPV) is an autoimmune disease characterized by oral mucosal blistering and circulating pathogenic IgG antibodies against desmoglein 3 (Dsg3), resulting in life-threatening bullae and erosion formation. Recently, microRNAs (miRNAs) have emerged as promising players in the diagnosis and prognosis of several pathological states. For the first time, we have identified a different expression profile of miRNAs isolated from plasma-derived exosomes (P-EVs) of MPV patients positive for antibodies against Dsg3 (Dsg3-positive) compared to healthy controls. Moreover, a dysregulated miRNA profile was confirmed in MPV tissue biopsies. In particular, a strong downregulation of the miR-148a-3p expression level in P-EVs of MPV patients compared to healthy controls was demonstrated. Bioinformatics prediction analysis identifies metalloproteinase-7 (MMP7) as a potential miR-148a-3p target. An in vitro acantholysis model revealed that the miR-148a-3p expression level was dramatically downregulated after treatment with Dsg3 autoantibodies, with a concomitant increase in MMP7 expression. The increased expression of MMP7 leads to the disruption of intercellular and/or extracellular matrix adhesion in an in vitro cellular model of MPV, with subsequent cell dissociation. Overexpression of miR-148a-3p prevented cell dissociation and regressed MMP7 upregulation. Our findings suggest a pivotal role of P-EV cargo in regulating molecular mechanisms involved in MPV pathogenesis and indicate them as potential MPV therapeutic targets.
Keyphrases
- poor prognosis
- end stage renal disease
- extracellular matrix
- ejection fraction
- cell proliferation
- newly diagnosed
- single cell
- chronic kidney disease
- signaling pathway
- peritoneal dialysis
- binding protein
- stem cells
- prognostic factors
- mesenchymal stem cells
- long non coding rna
- systemic lupus erythematosus
- cell migration
- gene expression
- multiple sclerosis
- pseudomonas aeruginosa
- cystic fibrosis
- bone marrow
- risk assessment
- transcription factor
- dna methylation
- human health
- genome wide
- climate change