Novel LRAP-binding partner revealing the plasminogen activation system as a regulator of cementoblast differentiation and mineral nodule formation in vitro.
Luciane MartinsBruna Rabelo AmorimCristiane Ribeiro SalmonAdriana Franco Paes LemeKamila Rosamilia KantovitzFrancisco Humberto NocitiPublished in: Journal of cellular physiology (2019)
Amelogenin isoforms, including full-length amelogenin (AMEL) and leucine-rich amelogenin peptide (LRAP), are major components of the enamel matrix, and are considered as signaling molecules in epithelial-mesenchymal interactions regulating tooth development and periodontal regeneration. Nevertheless, the molecular mechanisms involved are still poorly understood. The aim of the present study was to identify novel binding partners for amelogenin isoforms in the cementoblast (OCCM-30), using an affinity purification assay (GST pull-down) followed by mass spectrometry and immunoblotting. Protein-protein interaction analysis for AMEL and LRAP evidenced the plasminogen activation system (PAS) as a potential player regulating OCCM-30 response to amelogenin isoforms. For functional assays, PAS was either activated (plasmin) or inhibited (ε-aminocaproic acid [aminocaproic]) in OCCM-30 cells and the cell morphology, mineral nodule formation, and gene expression were assessed. PAS inhibition (EACA 100 mM) dramatically decreased mineral nodule formation and expression of OCCM-30 differentiation markers, including osteocalcin (Bglap), bone sialoprotein (Ibsp), osteopontin (Spp1), tissue-nonspecific alkaline phosphatase (Alpl) and collagen type I (Col1a1), and had no effect on runt-related transcription factor 2 (Runx2) and Osterix (Osx) mRNA levels. PAS activation (plasmin 5 µg/µl) significantly increased Col1a1 and decreased Bglap mRNA levels (p < .05). Together, our findings shed new light on the potential role of plasminogen signaling pathway in the control of the amelogenin isoform-mediated response in cementoblasts and provide new insights into the development of targeted therapies.
Keyphrases
- transcription factor
- gene expression
- protein protein
- binding protein
- dna binding
- signaling pathway
- mass spectrometry
- stem cells
- induced apoptosis
- high throughput
- small molecule
- poor prognosis
- single cell
- dna methylation
- liquid chromatography
- bone marrow
- cell cycle arrest
- pi k akt
- capillary electrophoresis
- epithelial mesenchymal transition
- bone mineral density
- cell therapy
- cell proliferation
- hiv testing
- cell death
- high resolution
- hiv infected
- wound healing
- body composition
- ms ms