Olfactomedin-4 improves cutaneous wound healing by promoting skin cell proliferation and migration through POU5F1/OCT4 and ESR1 signalling cascades.
Mariliis KlaasKristina Mäemets-AllasElizabeth HeinmäeHeli LagusTerje ArakMart EllerKülli KingoEsko KankuriViljar JaksPublished in: Cellular and molecular life sciences : CMLS (2022)
Olfactomedin-4 (OLFM4) is an olfactomedin-domain-containing glycoprotein, which regulates cell adhesion, proliferation, gastrointestinal inflammation, innate immunity and cancer metastasis. In the present study we investigated its role in skin regeneration. We found that OLFM4 expression is transiently upregulated in the proliferative phase of cutaneous wound healing in humans as well as in mice. Moreover, a significant increase in OLFM4 expression was detected in the skin of lesional psoriasis, a chronic inflammatory disease characterized by keratinocyte hyperproliferation. In vitro experiments demonstrated that OLFM4 selectively stimulated keratinocyte proliferation and increased both keratinocyte and fibroblast migration. Using proteotranscriptomic pathway analysis we revealed that transcription factors POU5F1/OCT4 and ESR1 acted as hubs for OLFM4-induced signalling in keratinocytes. In vivo experiments utilizing mouse splinted full-thickness cutaneous wound healing model showed that application of recombinant OLFM4 protein can significantly improve wound healing efficacy. Taken together, our results suggest that OLFM4 acts as a transiently upregulated inflammatory signal that promotes wound healing by regulating both dermal and epidermal cell compartments of the skin.
Keyphrases
- wound healing
- single cell
- oxidative stress
- poor prognosis
- optical coherence tomography
- cell adhesion
- transcription factor
- signaling pathway
- cell therapy
- binding protein
- diabetic retinopathy
- estrogen receptor
- diabetic rats
- type diabetes
- adipose tissue
- drug induced
- mass spectrometry
- high resolution
- small molecule
- metabolic syndrome
- skeletal muscle
- high fat diet induced
- cell free