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釉原蛋白缺陷型小鼠表现出釉质发育不全的表型。

Amelogenin-deficient mice display an amelogenesis imperfecta phenotype.

作者信息

Gibson C W, Yuan Z A, Hall B, Longenecker G, Chen E, Thyagarajan T, Sreenath T, Wright J T, Decker S, Piddington R, Harrison G, Kulkarni A B

机构信息

Department of Anatomy and Histology, University of Pennsylvania School of Dental Medicine, Philadelphia, Pennsylvania 19104, USA.

出版信息

J Biol Chem. 2001 Aug 24;276(34):31871-5. doi: 10.1074/jbc.M104624200. Epub 2001 Jun 13.

Abstract

Dental enamel is the hardest tissue in the body and cannot be replaced or repaired, because the enamel secreting cells are lost at tooth eruption. X-linked amelogenesis imperfecta (MIM 301200), a phenotypically diverse hereditary disorder affecting enamel development, is caused by deletions or point mutations in the human X-chromosomal amelogenin gene. Although the precise functions of the amelogenin proteins in enamel formation are not well defined, these proteins constitute 90% of the enamel organic matrix. We have disrupted the amelogenin locus to generate amelogenin null mice, which display distinctly abnormal teeth as early as 2 weeks of age with chalky-white discoloration. Microradiography revealed broken tips of incisors and molars and scanning electron microscopy analysis indicated disorganized hypoplastic enamel. The amelogenin null phenotype reveals that the amelogenins are apparently not required for initiation of mineral crystal formation but rather for the organization of crystal pattern and regulation of enamel thickness. These null mice will be useful for understanding the functions of amelogenin proteins during enamel formation and for developing therapeutic approaches for treating this developmental defect that affects the enamel.

摘要

牙釉质是人体中最坚硬的组织,且无法被替换或修复,因为釉质分泌细胞在牙齿萌出时就已消失。X连锁型釉质发育不全(MIM 301200)是一种影响釉质发育的具有多种表型的遗传性疾病,由人类X染色体上的釉原蛋白基因缺失或点突变引起。尽管釉原蛋白在釉质形成中的精确功能尚未明确,但这些蛋白构成了釉质有机基质的90%。我们破坏了釉原蛋白基因座以产生釉原蛋白缺失小鼠,这些小鼠早在2周龄时就表现出明显异常的牙齿,呈白垩色。显微放射照相显示门牙和臼齿的尖端断裂,扫描电子显微镜分析表明釉质发育不全且结构紊乱。釉原蛋白缺失的表型表明,釉原蛋白显然不是矿物晶体形成起始所必需的,而是对于晶体模式的组织和釉质厚度的调节是必需的。这些缺失小鼠将有助于理解釉原蛋白在釉质形成过程中的功能,并有助于开发治疗这种影响釉质的发育缺陷的治疗方法。

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