Milan Anna M, Sugars Rachael V, Embery Graham, Waddington Rachel J
Department of Clinical Dental Sciences, The University of Liverpool, Liverpool, UK.
Eur J Oral Sci. 2006 Jun;114(3):223-31. doi: 10.1111/j.1600-0722.2006.00347.x.
Dentine phosphoprotein (DPP) has been proposed to both promote and inhibit mineral deposition during dentinogenesis. The present study aimed to investigate the molecular interactions of DPP and dephosphorylated DPP (DPP-p) with hydroxyapatite (HAP). Bovine DPP was purified and dephosphorylated by alkaline phosphatase to obtain DPP-p. DPP and DPP-p adsorption to HAP was determined along with their ability, when free in solution or bound to collagen, to influence HAP-induced crystal growth. Absorption isotherms suggested that lower DPP concentrations (1.5-6.25 microg ml(-1)) demonstrated a reduced affinity for HAP compared with higher protein concentrations (12.5-50.0 microg ml(-1)). Dephosphorylated DPP had a much reduced affinity for HAP compared with DPP. Dentine phosphoprotein inhibited seeded HAP crystal growth, in a dose-dependent manner, whilst removal of the phosphate groups reduced this inhibition. When bound to collagen fibrils, DPP significantly promoted the rate of HAP crystal growth over 0-8 min. Conversely, DPP-p and collagen significantly decreased the rate of crystal growth over 0-18 min. These results indicate a major role for the phosphate groups present on DPP in HAP crystal growth. In addition, concentration-dependent conformational changes to DPP, and the interaction with other matrix components, such as collagen, are important in predicting its dual role in the mineralization of dentine.
牙本质磷蛋白(DPP)在牙本质形成过程中既被认为可促进也可抑制矿物质沉积。本研究旨在探究DPP和去磷酸化DPP(DPP-p)与羟基磷灰石(HAP)之间的分子相互作用。通过碱性磷酸酶对牛DPP进行纯化和去磷酸化以获得DPP-p。测定了DPP和DPP-p对HAP的吸附情况,以及它们在溶液中游离或与胶原蛋白结合时影响HAP诱导晶体生长的能力。吸附等温线表明,与较高蛋白质浓度(12.5 - 50.0 μg ml⁻¹)相比,较低的DPP浓度(1.5 - 6.25 μg ml⁻¹)对HAP的亲和力降低。与DPP相比,去磷酸化的DPP对HAP的亲和力大大降低。牙本质磷蛋白以剂量依赖性方式抑制接种的HAP晶体生长,而去除磷酸基团则降低了这种抑制作用。当与胶原纤维结合时,DPP在0 - 8分钟内显著促进了HAP晶体的生长速率。相反,DPP-p和胶原蛋白在0 - 18分钟内显著降低了晶体的生长速率。这些结果表明DPP上存在的磷酸基团在HAP晶体生长中起主要作用。此外,DPP浓度依赖性的构象变化以及与其他基质成分(如胶原蛋白)的相互作用对于预测其在牙本质矿化中的双重作用很重要。