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体外釉质形成:组织特异性细胞外基质生物矿化过程中上皮分泌后加工研究的模型。

Amelogenesis in vitro: a model for studies of epithelial postsecretory processing during tissue-specific extracellular matrix biomineralization.

作者信息

Fincham A G, Bessem C C, Bringas P, Hu Y Y, Snead M L, Slavkin H C

机构信息

Department of Basic Science, School of Dentistry, University of Southern California, Los Angeles 90098-0191.

出版信息

Differentiation. 1989 Jul;41(1):62-71. doi: 10.1111/j.1432-0436.1989.tb00733.x.

Abstract

The extracellular matrix (ECM) of developing mammalian enamel comprises a complex of unusual epithelial-derived proteins, which appear to function in concert to initiate and propagate tissue-specific biomineralization. Following enamel protein synthesis by ameloblast cells within the enamel organ, the subsequent steps of posttranslational modification, secretion, postsecretory processing and eventual removal of these proteins from forming enamel are largely unknown. To address this issue we have designed studies to investigate the hypothesis that enamel proteins are removed from enamel and translocated into the vasculature as relatively high-molecular-weight components. We examined enamel proteins recovered from serumless medium during prolonged organ culture of mouse capstage mandibular first molars. By 21 days in vitro the tooth crown formed and dentine and enamel biomineralization were apparent. At 31 days, explants retained metabolic activity and the enamel matrix showed extensive transformation. Immunologically identified enamel proteins of 26-18 k Da were produced by cultured tooth organs, translocated from tooth explants to the culture medium, recovered from the medium and then compared to control enamel protein from in vivo preparations. Comparable postsecretory processing of the 26-k Da amelogenin protein was observed in vitro and in vivo. We speculate that the pathway reported in the present studies is comparable to the processing of the enamel protein polypeptides of the maturing enamel which occurs in vivo. The in vitro organ culture model described in this report provides an approach with which to investigate the molecular events associated with epithelial-derived postsecretory processing of ECM molecules associated with tissue-specific biomineralization.

摘要

发育中的哺乳动物牙釉质的细胞外基质(ECM)由一系列特殊的上皮来源蛋白组成,这些蛋白似乎协同作用,启动并促进组织特异性生物矿化。成釉细胞在牙釉质器官内合成牙釉质蛋白后,这些蛋白的翻译后修饰、分泌、分泌后加工以及最终从正在形成的牙釉质中去除的后续步骤,在很大程度上尚不清楚。为了解决这个问题,我们设计了研究来探讨以下假说:牙釉质蛋白作为相对高分子量的成分从牙釉质中被去除并转移到脉管系统中。我们检查了在小鼠帽状期下颌第一磨牙的长期器官培养过程中,从无血清培养基中回收的牙釉质蛋白。体外培养21天时,牙冠形成,牙本质和牙釉质生物矿化明显。在31天时,外植体保持代谢活性,牙釉质基质显示出广泛的转化。培养的牙器官产生了免疫鉴定的26 - 18 kDa的牙釉质蛋白,这些蛋白从牙外植体转移到培养基中,从培养基中回收,然后与体内制备的对照牙釉质蛋白进行比较。在体外和体内观察到了26 kDa釉原蛋白的类似分泌后加工过程。我们推测本研究中报道的途径与体内成熟牙釉质的牙釉质蛋白多肽加工过程相似。本报告中描述的体外器官培养模型提供了一种方法,用以研究与组织特异性生物矿化相关的细胞外基质分子上皮来源的分泌后加工相关的分子事件。

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