4.7 Article

HucMSC Exosome-Delivered 14-3-3 Orchestrates Self-Control of the Wnt Response via Modulation of YAP During Cutaneous Regeneration

Journal

STEM CELLS
Volume 34, Issue 10, Pages 2485-2500

Publisher

WILEY
DOI: 10.1002/stem.2432

Keywords

Exosomes; 14-3-3 protein; YAP; Wnt; Stem cells; Cutaneous regeneration

Funding

  1. National Natural Science Foundation of China [31340040, 81272481, 81270214, 81572075]
  2. Jiangsu Province for Outstanding Sci-tech Innovation Team in Colleges and Universities [SJK2013-10]
  3. Jiangsu Province's Outstanding Medical Academic Leader and Sci-tech Innovation Team Program [LJ201117]
  4. Innovation Project for Graduate Student Research of Jiangsu Province [KYLX_1075]
  5. Key Laboratory of Embryo Molecular Biology, Ministry of Health of China
  6. Shanghai Key Laboratory of Embryo and Reproduction Engineering [KF201601]
  7. Priority Academic Program Development of Jiangsu Higher Education Institutions

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Numerous studies showed that mesenchymal stem cells derived exosome (MSC-Ex) markedly enhanced tissue regeneration, however, the issue of whether MSC-Ex could control stem cells expansion after a regenerative response to prevent tissue from overcrowding and dysplasia remains to be established. Herein, we found that human umbilical cord MSC (hucMSC)-exosomal14-3-3 mediated the binding of YAP and p-LATS by forming a complex to promote the phosphorylation of YAP, which orchestrate exosomal Wnt4 signal in cutaneous regeneration. First, we assessed deep second-degree burn rats treated with hucMSC-Ex and discovered that hucMSC-Ex promoting self-regulation of Wnt/-catenin signaling at the remodeling phase of cutaneous regeneration. HucMSC-Ex restricted excessive skin cell expansion and collagen deposition at 4 weeks. Under high cell density conditions, hucMSC-Ex inhibited Wnt/-catenin signaling through induction of YAP phosphorylation. Second, hucMSC-Ex proteomic analysis revealed that 14-3-3 proteins could be transported by exosome. Using gain- and loss-of-function studies, our results showed that hucMSC-exosomal 14-3-3 controlled YAP activities and phosphorylation at Ser127 site, and were required for the binding of YAP and p-LATS. Further studies revealed that 14-3-3 recruited YAP and p-LATS to form a complex under high cells density status and 14-3-3 other than YAP or p-LATS was the key regulatory molecule of this complex. These findings collectively indicate that hucMSC-Ex functions not only as an accelerator of the Wnt/-catenin signal to repair damaged skin tissue but also as a brake of the signal by modulating YAP to orchestrate controlled cutaneous regeneration. Stem Cells2016;34:2485-2500

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