Interleukin-27 induces the endothelial differentiation in Sca-1+ cardiac resident stem cells
•IL-27Rα was expressed in cardiac Sca-1+ cells.•The transcript expression of IL-27 was elevated in hearts in cardiac injury models.•STAT3/Pim-1 axis was activated by IL-27 in cardiac Sca-1+ cells.•IL-27 induces the endothelial differentiation in Sca-1+ cells through STAT3/Pim-1. Cytokines play impor...
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Veröffentlicht in: | Cytokine (Philadelphia, Pa.) Pa.), 2015-10, Vol.75 (2), p.365-372 |
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Zusammenfassung: | •IL-27Rα was expressed in cardiac Sca-1+ cells.•The transcript expression of IL-27 was elevated in hearts in cardiac injury models.•STAT3/Pim-1 axis was activated by IL-27 in cardiac Sca-1+ cells.•IL-27 induces the endothelial differentiation in Sca-1+ cells through STAT3/Pim-1.
Cytokines play important roles in cardiac repair and regeneration. Recently, we demonstrated that interleukin (IL)-6 family cytokines induce the endothelial differentiation of Sca-1+ cardiac resident stem cells through STAT3/Pim-1 signaling pathway. In contrast, the biological functions of IL-12 family cytokines in heart remain to be elucidated, though they show structural homology with IL-6. In the present study, we examined the effects of IL-12 family cytokines on the transdifferentiation of cardiac Sca-1+ cells into cardiac cells. RT-PCR analyses revealed that IL-27 receptor α (IL-27Rα), but not IL-12R or IL-23R, was expressed in cardiac Sca-1+ cells. The transcript expression of IL-27 was elevated in murine hearts in cardiac injury models. Intriguingly, IL-27 stimulation for 14days induced the endothelial cell (EC) marker genes, such as CD-31 and VE-cadherin. Immunoblot analyses clarified that IL-27 treatment rapidly phosphorylated STAT3. IL-27 upregulated the expression of Pim-1, but the overexpression of dominant negative STAT3 abrogated the induction of Pim-1 by IL-27. Finally, adenoviral transfection of dominant negative Pim-1 inhibited IL-27-induced EC differentiation of cardiac Sca-1+ cells. These findings demonstrated that IL-27 promoted the commitment of cardiac stem cells into the EC lineage, possibly leading to neovascularization as a novel biological function. IL-27 could not only regulate the inflammation but also contribute to the maintenance of the tissue homeostasis through stem cell differentiation at inflammatory sites. |
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ISSN: | 1043-4666 1096-0023 |
DOI: | 10.1016/j.cyto.2015.06.009 |