[No authors listed]
Our previous study indicated that loureirin A induces hair follicle stem cell (HFSC) differentiation through Wnt/βâcatenin signaling pathway activation. However, if and how microRNAs (miRNAs/miRs) modulate loureirin Aâinduced differentiation remains to be elucidated. In the present study, HFSCs were separated from the vibrissae of rats and identified by CD34 and keratin, type 1 cytoskeletal (K)15 expression. Microarrayâbased miRNA profiling analysis revealed that miRâ339â5p was downregulated in loureirin Aâinduced HFSC differentiation. miRâ339â5p overexpression by transfection with miRâ339â5p mimics markedly inhibited the expression of K10 and involucrin, which are markers of epidermal differentiation, whereas inhibition of miRâ339â5p by miRâ339â5p inhibitor transfection promoted the expression of K10 and involucrin. These results suggest that miRâ339â5p is a negative regulator of HFSC differentiation following induction by loureirin A. These findings were confirmed by a luciferase assay. Homeobox protein DLXâ5 (DLX5) was identified as a direct target of miRâ339â5p. Furthermore, it was demonstrated that miRâ339â5p inhibited DLX5. Overexpression of miRâ339â5p by mimic transfection significantly inhibited protein Wntâ3a (Wnt3a) expression, while inhibition of miRâ339â5p by inhibitor transfection significantly increased the expression of Wnt3a. Furthermore, small interfering RNA targeting DLX5 was transfected into HFSCs, and western blot analysis revealed that Wnt3a, involucrin and K10 expression was significantly downregulated. Taken together, these results suggest that miRâ339â5p negatively regulated loureirin Aâinduced HFSC differentiation by targeting DLX5, resulting in Wnt/βâcatenin signaling pathway inhibition. This may provide a possible therapeutic target for skin repair and regeneration.
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