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MMP20 处理的 M180 牙釉蛋白足以使鼠牙釉质形成交叉。

M180 amelogenin processed by MMP20 is sufficient for decussating murine enamel.

机构信息

Department of Anatomy and Cell Biology, University of Pennsylvania School of Dental Medicine, 240 S. 40th Street, Philadelphia, PA 19104-6030, USA.

出版信息

J Dent Res. 2013 Dec;92(12):1118-22. doi: 10.1177/0022034513506444. Epub 2013 Sep 26.

Abstract

Amelogenin (AMELX) and matrix metalloproteinase-20 (MMP20) are essential for proper enamel development. Amelx and Mmp20 mutations cause amelogenesis imperfecta. MMP20, a protease secreted by ameloblasts, is responsible for processing enamel proteins, including AMELX, during the secretory stage of enamel formation. Of at least 16 different amelogenin splice products, the most abundant isoform found in murine ameloblasts and developing enamel is the M180 protein. To understand the role of MMP20 processing of M180 AMELX, we generated AmelxKO/Mmp20KO (DKO) mice with an amelogenin (M180Tg) transgene. We analyzed the enamel phenotype by SEM to determine enamel structure and thickness, µCT, and by nanoindentation to quantify enamel mechanical properties. M180Tg/DKO mouse enamel had 37% of the hardness of M180Tg/AmelxKO teeth and demonstrated a complete lack of normal prismatic architecture. Although molar enamel of M180Tg/AmelxKO mice was thinner than WT, it had similar mechanical properties and decussating enamel prisms, which were abolished by the loss of MMP20 in the M180Tg/DKO mice. Retention of the C-terminus or complete lack of this domain is unable to rescue amelogenin null enamel. We conclude that among amelogenins, M180 alone is sufficient for normal enamel mechanical properties and prism patterns, but that additional amelogenin splice products are required to restore enamel thickness.

摘要

釉原蛋白(AMELX)和基质金属蛋白酶-20(MMP20)对于正常牙釉质发育至关重要。AMELX 和 Mmp20 突变会导致釉质发育不全。MMP20 是一种由成釉细胞分泌的蛋白酶,负责在釉质形成的分泌阶段对釉质蛋白进行加工,包括 AMELX。在鼠成釉细胞和发育中的釉质中发现的至少 16 种不同的釉原蛋白剪接产物中,最丰富的同工型是 M180 蛋白。为了了解 MMP20 对 M180 AMELX 的加工作用,我们生成了具有釉原蛋白(M180Tg)转基因的 AmelxKO/Mmp20KO(双敲除,DKO)小鼠。我们通过 SEM 分析釉质表型来确定釉质结构和厚度、µCT,并通过纳米压痕技术来量化釉质的机械性能。M180Tg/DKO 小鼠的牙釉质硬度仅为 M180Tg/AmelxKO 牙齿的 37%,且表现出完全缺乏正常的棱柱形结构。尽管 M180Tg/AmelxKO 小鼠的磨牙釉质比 WT 薄,但它具有相似的机械性能和交错的釉质棱柱,而在 M180Tg/DKO 小鼠中 MMP20 的缺失则消除了这些特征。保留 C 端或完全缺乏该结构域都不能挽救釉原蛋白缺失的牙釉质。我们的结论是,在釉原蛋白中,只有 M180 单独就足以维持正常的牙釉质机械性能和棱柱模式,但需要额外的釉原蛋白剪接产物来恢复釉质厚度。

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