Khan Feroz, Liu Haichuan, Reyes Aileen, Witkowska H Ewa, Martinez-Avila Olga, Zhu Li, Li Wu, Habelitz Stefan
Division of Biomaterials and Bioengineering, Department of Preventive and Restorative Dental Sciences, University of California, 707 Parnassus Avenue, San Francisco, CA 94143, USA.
Biochim Biophys Acta. 2013 Mar;1830(3):2600-7. doi: 10.1016/j.bbagen.2012.11.021.
Enamel synthesis is a highly dynamic process characterized by simultaneity of matrix secretion, assembly and processing during apatite mineralization. MMP-20 is the first protease to hydrolyze amelogenin, resulting in specific cleavage products that self-assemble into nanostructures at specific mineral compositions and pH. In this investigation, enzyme kinetics of MMP-20 proteolysis of recombinant full-length human amelogenin (rH174) under different mineral compositions is elucidated.
Recombinant amelogenin was cleaved by MMP-20 under various physicochemical conditions and the products were analyzed by SDS-PAGE and MALDI-TOF MS.
It was observed that mineral ions largely affect cleavage pattern, and enzyme kinetics of rH174 hydrolysis. Out of the five selected mineral ion compositions, MMP-20 was most efficient at high calcium concentration, whereas it was slowest at high phosphate, and at high calcium and phosphate concentrations. In most of the compositions, N- and C-termini were cleaved rapidly at several places but the central region of amelogenin was protected up to some extent in solutions with high calcium and phosphate contents.
These in vitro studies showed that the chemistry of the protein solutions can significantly alter the processing of amelogenin by MMP-20, which may have significant effects in vivo matrix assembly and subsequent calcium phosphate mineralization.
This study elaborates the possibilities of the processing of the organic matrix into mineralized tissue during enamel development.
釉质合成是一个高度动态的过程,其特征是在磷灰石矿化过程中基质分泌、组装和加工同时进行。基质金属蛋白酶-20(MMP-20)是第一种水解釉原蛋白的蛋白酶,产生特定的裂解产物,这些产物在特定的矿物质组成和pH值下自组装成纳米结构。在本研究中,阐明了不同矿物质组成下MMP-20对重组全长人釉原蛋白(rH174)进行蛋白水解的酶动力学。
在各种物理化学条件下,用MMP-20裂解重组釉原蛋白,产物用SDS-PAGE和MALDI-TOF MS分析。
观察到矿物质离子在很大程度上影响裂解模式和rH174水解的酶动力学。在所选的五种矿物质离子组成中,MMP-20在高钙浓度下效率最高,而在高磷酸盐以及高钙和高磷酸盐浓度下效率最低。在大多数组成中,N端和C端在几个位置迅速裂解,但在高钙和高磷酸盐含量的溶液中,釉原蛋白的中央区域在一定程度上受到保护。
这些体外研究表明,蛋白质溶液的化学性质可显著改变MMP-20对釉原蛋白的加工过程,这可能对体内基质组装和随后的磷酸钙矿化产生重大影响。
本研究阐述了在釉质发育过程中有机基质加工成矿化组织的可能性。