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釉原蛋白和釉基质蛋白基因突变致釉质发育不全小鼠模型的表型-基因型相关性。

Phenotype-genotype correlations in mouse models of amelogenesis imperfecta caused by Amelx and Enam mutations.

机构信息

School of Dentistry, Faculty of Health and Life Sciences, Dental Hospital, Liverpool, UK.

出版信息

Cells Tissues Organs. 2012;196(5):420-30. doi: 10.1159/000336440. Epub 2012 Jun 28.

Abstract

Mutations in human and in mouse orthologous genes Amelx and Enam result in a diverse range of enamel defects. In this study we aimed to investigate the phenotype-genotype correlation between the mutants and the wild-type controls in mouse models of amelogenesis imperfecta using novel measurement approaches. Ten hemi-mandibles and incisors were dissected from each group of Amelx(WT), Amelx(X/Y64H), Amelx(Y/Y64H), Amelx(Y64H/Y64H), and Enam(WT), Enam(Rgsc395) heterozygous and Enam(Rgsc395) homozygous mice. Their macro-morphology, colour and micro-topography were assessed using bespoke 2D and 3D image analysis systems and customized colour and whiteness algorithms. The novel methods identified significant differences (p ≤ 0.05) between the Amelx groups for mandible and incisor size and enamel colour and between the Enam groups for incisor size and enamel colour. The Amelx(WT) mice had the largest mandibles and incisors, followed in descending order of size by the Amelx(X/Y64H), Amelx(Y/Y64H) and Amelx(Y64H/Y64H) mice. Within the Enam groups the Enam(WT) incisors were largest and the Enam(Rgsc395) heterozygous mice were smallest. The effect on tooth morphology was also reflected by the severity of the enamel defects in the colour and whiteness assessment. Amelogenin affected mandible morphology and incisor enamel formation, while enamelin only affected incisors, supporting the multifunctional role of amelogenin. The enamelin mutation was associated with earlier forming enamel defects. The study supported the critical involvement of amelogenin and enamelin in enamel mineralization.

摘要

人类和小鼠同源基因 Amelx 和 Enam 的突变导致了广泛的釉质缺陷。在这项研究中,我们旨在使用新的测量方法,研究釉质不全型小鼠模型中突变体与野生型对照之间的表型-基因型相关性。从每组 Amelx(WT)、Amelx(X/Y64H)、Amelx(Y/Y64H)、Amelx(Y64H/Y64H)、Enam(WT)、Enam(Rgsc395)杂合和 Enam(Rgsc395)纯合小鼠的半下颌骨和切牙中解剖出 10 个样本。使用定制的 2D 和 3D 图像分析系统和定制的颜色和白度算法评估它们的宏观形态、颜色和微观形貌。新方法确定了 Amelx 组下颌骨和切牙大小以及釉质颜色和 Enam 组切牙大小和釉质颜色之间存在显著差异(p ≤ 0.05)。Amelx(WT)小鼠的下颌骨和切牙最大,其次是 Amelx(X/Y64H)、Amelx(Y/Y64H)和 Amelx(Y64H/Y64H)小鼠,大小依次递减。在 Enam 组中,Enam(WT)切牙最大,Enam(Rgsc395)杂合子小鼠最小。牙形态的影响也反映在颜色和白度评估中釉质缺陷的严重程度上。釉原蛋白影响下颌骨形态和切牙釉质形成,而釉蛋白仅影响切牙,支持釉原蛋白的多功能作用。釉蛋白突变与早期形成的釉质缺陷有关。该研究支持釉原蛋白和釉蛋白在釉质矿化中的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee4c/3718574/71d3e456ecf0/cto-0196-0420-g01.jpg

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