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CCL28-induced CCR10/eNOS interaction in angiogenesis and skin wound healing.

Citation
Chen, Z., et al. “Ccl28-Induced Ccr10/Enos Interaction In Angiogenesis And Skin Wound Healing.”. Faseb Journal : Official Publication Of The Federation Of American Societies For Experimental Biology, pp. 5838-5850.
Center University of Michigan
Author Zhenlong Chen, Jacob M Haus, Lin Chen, Stephanie C Wu, Norifumi Urao, Timothy J Koh, Richard D Minshall
Keywords CCL28, CCR10, Angiogenesis, eNOS, Wound healing
Abstract

Chemokines and their receptors play important roles in vascular homeostasis, development, and angiogenesis. Little is known regarding the molecular signaling mechanisms activated by CCL28 chemokine via its primary receptor CCR10 in endothelial cells (ECs). Here, we test the hypothesis that CCL28/CCR10 signaling plays an important role in regulating skin wound angiogenesis through endothelial nitric oxide synthase (eNOS)-dependent Src, PI3K, and MAPK signaling. We observed nitric oxide (NO) production in human primary ECs stimulated with exogenous CCL28, which also induced direct binding of CCR10 and eNOS resulting in inhibition of eNOS activity. Knockdown of CCR10 with siRNA lead to reduced eNOS expression and tube formation suggesting the involvement of CCR10 in EC angiogenesis. Based on this interaction, we engineered a myristoylated 7 amino acid CCR10-binding domain (Myr-CBD7) peptide and showed that this can block eNOS interaction with CCR10, but not with calmodulin, resulting in upregulation of eNOS activity. Importantly, topical administration of Myr-CBD7 peptide on mouse dermal wounds not only blocked CCR10-eNOS interaction, but also enhanced expression of eNOS, CD31, and IL-4 with reduction of CCL28 and IL-6 levels associated with improved wound healing. These results point to a potential therapeutic strategy to upregulate NO bioavailability, enhance angiogenesis, and improve wound healing by disrupting CCL28-activated CCR10-eNOS interaction.

Year of Publication
2020
Journal
FASEB journal : official publication of the Federation of American Societies for Experimental Biology
Volume
34
Issue
4
Number of Pages
5838-5850
Date Published
04/2020
ISSN Number
1530-6860
DOI
10.1096/fj.201902060R
Alternate Journal
FASEB J.
PMID
32124475
PMCID
PMC7136142
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