Extracellular processing of enamel matrix proteins and the control of crystal growth.

Journal de biologie buccale Pub Date : 1990-12-01
C Robinson, R C Shore, J Kirkham, N J Stonehouse
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Abstract

The origin, expression and role of matrix modifying enzymes in dental enamel was investigated by zymography and growth of enamel crystals in vitro. Gelatinase activity of the neutral metalloprotease type was detected at similar molecular weights in enamel organ, enamel and dentine. The activity was present throughout all developmental stages in enamel organ but was dramatically reduced in the maturation stage of the enamel. Activity of the serine protease type directed against enamel matrix was also detected in enamel, particularly in the maturation stage. No such activity was detected in the enamel organ. Phosphatase activity at alkaline pH was demonstrated at similar molecular weights in both enamel and enamel organ. This activity was maximal in the maturation stage. Further experiments showed that both serine proteases and alkaline phosphatase were able to facilitate enamel crystal growth in vitro. Matrix modification via temporally and spatially restricted enzymes may be directly involved in the control of enamel crystal growth and hence in the determination of final tissue architecture.

釉质基质蛋白的胞外加工与晶体生长的控制。
通过酶谱法和体外培养牙釉质晶体,研究了基质修饰酶在牙釉质中的来源、表达和作用。中性金属蛋白酶型明胶酶在牙釉质器官、牙釉质和牙本质中具有相似分子量。该活性在牙釉质器官的所有发育阶段均存在,但在牙釉质成熟阶段显著降低。在釉质中也检测到针对釉质基质的丝氨酸蛋白酶类型的活性,特别是在成熟阶段。在牙釉质器官中未检测到这种活性。磷酸酶在碱性条件下的活性在牙釉质和牙釉质器官中具有相似的分子量。这种活性在成熟期达到最大值。进一步的实验表明丝氨酸蛋白酶和碱性磷酸酶都能促进釉质晶体的体外生长。通过时间和空间限制酶修饰基质可能直接参与釉质晶体生长的控制,从而决定最终的组织结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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