Dental enamel development: proteinases and their enamel matrix substrates.

ISRN dentistry Pub Date : 2013-09-16 DOI:10.1155/2013/684607
John D Bartlett
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Abstract

This review focuses on recent discoveries and delves in detail about what is known about each of the proteins (amelogenin, ameloblastin, and enamelin) and proteinases (matrix metalloproteinase-20 and kallikrein-related peptidase-4) that are secreted into the enamel matrix. After an overview of enamel development, this review focuses on these enamel proteins by describing their nomenclature, tissue expression, functions, proteinase activation, and proteinase substrate specificity. These proteins and their respective null mice and human mutations are also evaluated to shed light on the mechanisms that cause nonsyndromic enamel malformations termed amelogenesis imperfecta. Pertinent controversies are addressed. For example, do any of these proteins have a critical function in addition to their role in enamel development? Does amelogenin initiate crystallite growth, does it inhibit crystallite growth in width and thickness, or does it do neither? Detailed examination of the null mouse literature provides unmistakable clues and/or answers to these questions, and this data is thoroughly analyzed. Striking conclusions from this analysis reveal that widely held paradigms of enamel formation are inadequate. The final section of this review weaves the recent data into a plausible new mechanism by which these enamel matrix proteins support and promote enamel development.

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牙釉质发育:蛋白酶及其釉质基质底物。
本综述侧重于最新发现,并详细介绍了有关分泌到釉质基质中的每种蛋白质(釉原蛋白、釉母细胞蛋白和釉质素)和蛋白酶(基质金属蛋白酶-20 和allikrein 相关肽酶-4)的知识。在概述了牙釉质的发育之后,本综述将重点介绍这些牙釉质蛋白,描述它们的命名、组织表达、功能、蛋白酶活化和蛋白酶底物特异性。此外,还对这些蛋白及其各自的小鼠和人类突变进行了评估,以揭示导致非综合征性釉质畸形(即釉质发育不全症)的机制。研究还探讨了一些有争议的问题。例如,这些蛋白质除了在釉质发育中发挥作用外,是否还有其他关键功能?amelogenin是否启动了结晶体的生长,是否抑制了结晶体在宽度和厚度上的生长,还是两者都不起作用?对无效小鼠文献的详细研究为这些问题提供了明确无误的线索和/或答案,并对这些数据进行了深入分析。分析得出的惊人结论揭示出,广为流传的釉质形成范式是不充分的。这篇综述的最后一部分将最新数据编织成一个可信的新机制,通过这个机制,这些釉质基质蛋白支持并促进了釉质的发育。
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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