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基因如何在发育过程中定制牙齿?

How do genes make teeth to order through development?

作者信息

Mitsiadis Thimios A, Smith Moya M

机构信息

Department of Craniofacial Development, King's College London Dental Institute, Guy's Hospital, London SE1 9RT, UK.

出版信息

J Exp Zool B Mol Dev Evol. 2006 May 15;306(3):177-82. doi: 10.1002/jez.b.21104.

Abstract

This introduction to new patterning theories for the vertebrate dentition outlines the historical concepts to explain graded sequences in tooth shape in mammals (incisors, canines, premolars, molars) which change in evolution in a linked manner, constant for each region. The classic developmental models for shape regulation, known as the 'regional field' and 'dental clone' models, were inspired by the human dentition, where it is known that the last tooth in each series is the one commonly absent. The mouse, as a valuable experimental model, has provided data to test these models and more recently, based on spatial-temporal gene expression data, the 'dental homeobox code' was proposed to specify regions and regulate tooth shape. We have attempted to combine these hypotheses in a new model of the combinatorial homeobox gene expression pattern with the clone and field theories in one of 'co-operative genetic interaction'. This also explains the genetic absence of teeth in humans ascribed to point mutations in mesenchymally expressed genes, which affect tooth number in each series.

摘要

这篇关于脊椎动物牙列新形态发生理论的介绍概述了解释哺乳动物牙齿形状渐变序列的历史概念(门牙、犬齿、前磨牙、磨牙),这些牙齿形状在进化过程中以关联方式变化,每个区域都保持恒定。经典的形状调控发育模型,即“区域场”和“牙克隆”模型,是受人类牙列启发而来,已知在人类牙列中每个牙列的最后一颗牙通常缺失。小鼠作为一种有价值的实验模型,提供了检验这些模型的数据,最近,基于时空基因表达数据,有人提出了“牙齿同源框密码”来指定区域并调控牙齿形状。我们试图将这些假说整合到一个新模型中,即组合同源框基因表达模式与克隆和场理论相结合的“合作基因相互作用”模型。这也解释了人类因间充质表达基因的点突变导致牙齿缺失的现象,这种突变会影响每个牙列中的牙齿数量。

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