The Opioid Receptor Influences Circadian Rhythms in Human Keratinocytes through the β-Arrestin Pathway

Author:

Bigliardi Paul12,Junnarkar Seetanshu3,Markale Chinmay12ORCID,Lo Sydney12ORCID,Bigliardi Elena12,Kalyuzhny Alex4,Ong Sheena3ORCID,Dunn Ray35,Wahli Walter567ORCID,Bigliardi-Qi Mei12

Affiliation:

1. Department of Dermatology, University of Minnesota, Minneapolis, MN 55455, USA

2. Stem Cell Institue, McGuire Translational Research Facility, University of Minnesota, Minneapolis, MN 55455, USA

3. Agency for Science, Technology and Research, Singapore 138632, Singapore

4. Department of Neuroscience, Medical School, University of Minnesota, Minneapolis, MN 55455, USA

5. Lee Kong Chian School of Medicine, Nanyang Technological University, Singapore 639798, Singapore

6. Unité Mixte de Recherche (UMR) 1331, Institut National de la Recherche Agronomique (INRA), ToxAlim, 31000 Toulouse, France

7. Center for Integrative Genomics, University of Lausanne, 1015 Lausanne, Switzerland

Abstract

The recent emphasis on circadian rhythmicity in critical skin cell functions related to homeostasis, regeneration and aging has shed light on the importance of the PER2 circadian clock gene as a vital antitumor gene. Furthermore, delta-opioid receptors (DOPrs) have been identified as playing a crucial role in skin differentiation, proliferation and migration, which are not only essential for wound healing but also contribute to cancer development. In this study, we propose a significant association between cutaneous opioid receptor (OPr) activity and circadian rhythmicity. To investigate this link, we conducted a 48 h circadian rhythm experiment, during which RNA samples were collected every 5 h. We discovered that the activation of DOPr by its endogenous agonist Met-Enkephalin in N/TERT-1 keratinocytes, synchronized by dexamethasone, resulted in a statistically significant 5.6 h delay in the expression of the core clock gene PER2. Confocal microscopy further confirmed the simultaneous nuclear localization of the DOPr-β-arrestin-1 complex. Additionally, DOPr activation not only enhanced but also induced a phase shift in the rhythmic binding of β-arrestin-1 to the PER2 promoter. Furthermore, we observed that β-arrestin-1 regulates the transcription of its target genes, including PER2, by facilitating histone-4 acetylation. Through the ChIP assay, we determined that Met-Enkephalin enhances β-arrestin-1 binding to acetylated H4 in the PER2 promoter. In summary, our findings suggest that DOPr activation leads to a phase shift in PER2 expression via β-arrestin-1-facilitated chromatin remodeling. Consequently, these results indicate that DOPr, much like its role in wound healing, may also play a part in cancer development by influencing PER2.

Funder

Agency for Science, Technology and Research (A*STAR), Singapore

Lee Kong Chian School of Medicine, Nanyang Technological University, Singapore

Publisher

MDPI AG

Subject

General Medicine

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