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靶向 p120 连环蛋白消融破坏牙釉质发育。

Targeted p120-catenin ablation disrupts dental enamel development.

机构信息

Department of Cytokine Biology, Forsyth Institute, Boston, Massachusetts, USA.

出版信息

PLoS One. 2010 Sep 16;5(9):e12703. doi: 10.1371/journal.pone.0012703.

Abstract

Dental enamel development occurs in stages. The ameloblast cell layer is adjacent to, and is responsible for, enamel formation. When rodent pre-ameloblasts become tall columnar secretory-stage ameloblasts, they secrete enamel matrix proteins, and the ameloblasts start moving in rows that slide by one another. This movement is necessary to form the characteristic decussating enamel prism pattern. Thus, a dynamic system of intercellular interactions is required for proper enamel development. Cadherins are components of the adherens junction (AJ), and they span the cell membrane to mediate attachment to adjacent cells. p120 stabilizes cadherins by preventing their internalization and degradation. So, we asked if p120-mediated cadherin stability is important for dental enamel formation. Targeted p120 ablation in the mouse enamel organ had a striking effect. Secretory stage ameloblasts detached from surrounding tissues, lost polarity, flattened, and ameloblast E- and N-cadherin expression became undetectable by immunostaining. The enamel itself was poorly mineralized and appeared to be composed of a thin layer of merged spheres that abraded from the tooth. Significantly, p120 mosaic mouse teeth were capable of forming normal enamel demonstrating that the enamel defects were not a secondary effect of p120 ablation. Surprisingly, blood-filled sinusoids developed in random locations around the developing teeth. This has not been observed in other p120-ablated tissues and may be due to altered p120-mediated cell signaling. These data reveal a critical role for p120 in tooth and dental enamel development and are consistent with p120 directing the attachment and detachment of the secretory stage ameloblasts as they move in rows.

摘要

牙釉质的发育分阶段进行。成釉细胞层与牙釉质的形成相邻,并负责牙釉质的形成。当啮齿类动物前成釉细胞变成高柱状分泌期成釉细胞时,它们分泌釉基质蛋白,而成釉细胞开始彼此滑动的行列中移动。这种运动对于形成特征性的交错牙釉质棱柱图案是必要的。因此,适当的牙釉质发育需要一个动态的细胞间相互作用系统。钙黏蛋白是黏着连接(AJ)的组成部分,它们跨越细胞膜,介导与相邻细胞的附着。p120 通过防止其内化和降解来稳定钙黏蛋白。因此,我们询问 p120 介导的钙黏蛋白稳定性是否对牙釉质形成很重要。在小鼠牙釉质器官中靶向敲除 p120 具有显著的效果。分泌期成釉细胞从周围组织中分离出来,失去极性,变平,免疫染色显示 E-和 N-钙黏蛋白表达无法检测到。牙釉质本身矿化不良,似乎由从牙齿上磨掉的一层薄的合并球体组成。重要的是,p120 镶嵌小鼠牙齿能够形成正常的牙釉质,表明牙釉质缺陷不是 p120 敲除的次要影响。令人惊讶的是,充满血液的窦道在发育中的牙齿周围的随机位置发展。这在其他 p120 敲除的组织中没有观察到,可能是由于改变了 p120 介导的细胞信号。这些数据揭示了 p120 在牙齿和牙釉质发育中的关键作用,并且与 p120 指导分泌期成釉细胞在行列中移动时的附着和分离一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4d6/2940824/6d0dac177eae/pone.0012703.g001.jpg

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