The Bone Sialoprotein RGD Domain Modulates and Maintains Periodontal Development

Author:

Nagasaki K.1ORCID,Chavez M.B.2,Nagasaki A.1ORCID,Taylor J.M.1,Tan M.H.2,Ma M.1,Ralston E.3,Thew M.E.4,Kim D.-G.4,Somerman M.J.1,Foster B.L.2ORCID

Affiliation:

1. Laboratory of Oral Connective Tissue Biology, National Institute of Arthritis and Musculoskeletal and Skin Diseases, National Institutes of Health, Bethesda, MD, USA

2. Biosciences Division, College of Dentistry, The Ohio State University, Columbus, OH, USA

3. Light Imaging Section, Office of Science and Technology, National Institute of Arthritis and Musculoskeletal and Skin Diseases, National Institutes of Health, Bethesda, MD, USA

4. Division of Orthodontics, College of Dentistry, The Ohio State University, Columbus, OH, USA

Abstract

Bone sialoprotein (gene: Ibsp; protein: BSP) is a multifunctional extracellular matrix protein present in bone, cementum, and dentin. Accumulating evidence supports BSP as a key regulator of mineralized tissue formation via evolutionarily conserved functional domains, including a C-terminal integrin-binding Arg-Gly-Asp (RGD) domain implicated in extracellular matrix–cell signaling. Ablation of Ibsp in mice ( Ibsp−/−) results in impaired bone growth and mineralization and defective osteoclastogenesis, with effects in the craniofacial region including reduced acellular cementum formation, detachment of the periodontal ligament (PDL), alveolar bone hypomineralization, and severe periodontal breakdown. We hypothesized that BSP-RGD plays an important role in cementum and alveolar bone formation and mineralization, as well as periodontal function. This hypothesis was tested by replacing the RGD motif with a nonfunctional Lys-Ala-Glu (KAE) sequence in ( IbspKAE/KAE) mice and OCCM.30 murine ( IbspKAE) cementoblasts. The RGD domain was not critical for acellular or cellular cementum formation in IbspKAE/KAE mice. However, PDL volume and thickness were increased, and significantly more tartrate-resistant acid phosphatase–positive osteoclasts were found on alveolar bone surfaces of IbspKAE/KAE mice versus wild type mice. PDL organization was disrupted as indicated by picrosirius red stain, second harmonic generation imaging, dynamic mechanical analysis, and decreased asporin proteoglycan localization. In vitro studies implicated RGD functions in cell migration, adhesion, and mineralization, and this was confirmed by an ossicle implant model where cells lacking BSP-RGD showed substantial defects as compared with controls. In total, the BSP-RGD domain is implicated in periodontal development, though the scale and scope of changes indicated by in vitro studies indicate that other factors may partially compensate for and reduce the phenotypic severity of mice lacking BSP-RGD in vivo.

Funder

National Institute of Dental and Craniofacial Research

Japan Society for the Promotion of Science

National Institute of Arthritis and Musculoskeletal and Skin Diseases

Publisher

SAGE Publications

Subject

General Dentistry

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