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Updated: Mar 28, 2026

Cell Population Analyses During Skin Carcinogenesis
Published on: August 21, 2013
β‑Arrestin-Mediated Activation of Chemokine Receptor CCR7 by Human β‑Defensin‑3 Drives Oral Squamous Cell Carcinoma
Novelyn Putri Kinanti1, Chun-Chun Chang2,3, Xing-Yan Lai4
1Department of Biomedical Sciences and Engineering, College of Biomedical Engineering and Technology, Tzu Chi University, Hualien 97004, Taiwan.
Abstract:
Human β-defensin-3 (hBD3), an epithelial-derived antimicrobial peptide, was recently identified as a regulator of oral squamous cell carcinoma (OSCC) progression through its interaction with the chemokine receptor CCR7a key mediator of immune cell trafficking and tumor metastasis. In this study, we aimed to clarify the structural and mechanistic basis of hBD3-induced CCR7 activation by employing molecular docking combined with atomic-level molecular dynamics simulations. Binding of hBD3 induced marked conformational rearrangements in CCR7, enhancing β-arrestin-2 recruitment and initiating noncanonical intracellular signaling cascades. Comparative studies with the endogenous CCR7 ligands CCL19 and CCL21 revealed that hBD3 exhibited dual functionality: intact disulfide bonds confer agonistic properties by promoting receptor activation, whereas the disruption of these bonds converts the peptide into an antagonist. Moreover, distinct phosphorylation signatures within the serine/threonine clusters of the C-terminal tail of CCR7 were found to govern downstream signaling outcomes. Collectively, these results reveal a mechanism reliant on both disulfide bond stability and phosphorylation patterns through which hBD3 differentially regulates CCR7 function, providing novel insights into ligand-specific receptor modulation and potential therapeutic strategies for CCR7-mediated malignancies.
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