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切牙牙尖形态发生抑制在哺乳动物异型齿演化中的作用。

A role for suppressed incisor cuspal morphogenesis in the evolution of mammalian heterodont dentition.

机构信息

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

出版信息

Proc Natl Acad Sci U S A. 2010 Jan 5;107(1):92-7. doi: 10.1073/pnas.0907236107. Epub 2009 Dec 14.

Abstract

Changes in tooth shape have played a major role in vertebrate evolution with modification of dentition allowing an organism to adapt to new feeding strategies. The current view is that molar teeth evolved from simple conical teeth, similar to canines, by progressive addition of extra "cones" to form progressively complex multicuspid crowns. Mammalian incisors, however, are neither conical nor multicuspid, and their evolution is unclear. We show that hypomorphic mutation of a cell surface receptor, Lrp4, which modulates multiple signaling pathways, produces incisors with grooved enamel surfaces that exhibit the same molecular characteristics as the tips of molar cusps. Mice with a null mutation of Lrp4 develop extra cusps on molars and have incisors that exhibit clear molar-like cusp and root morphologies. Molecular analysis identifies misregulation of Shh and Bmp signaling in the mutant incisors and suggests an uncoupling of the processes of tooth shape determination and morphogenesis. Incisors thus possess a developmentally suppressed, cuspid crown-like morphogenesis program similar to that in molars that is revealed by loss of Lrp4 activity. Several mammalian species naturally possess multicuspid incisors, suggesting that mammals have the capacity to form multicuspid teeth regardless of location in the oral jaw. Localized loss of enamel may thus have been an intermediary step in the evolution of cusps, both of which use Lrp4-mediated signaling.

摘要

牙齿形状的变化在脊椎动物进化中起着重要作用,通过对牙齿的修饰,使生物体能够适应新的进食策略。目前的观点是,臼齿是由类似犬齿的简单锥形牙齿通过逐渐增加额外的“锥体”形成逐渐复杂的多尖齿冠而进化而来的。然而,哺乳动物的门齿既不是锥形的也不是多尖的,它们的进化过程尚不清楚。我们发现,细胞表面受体 Lrp4 的功能获得性突变(可调节多种信号通路)会导致门齿的釉质表面出现凹槽,这些门齿表现出与臼齿齿尖相同的分子特征。Lrp4 基因敲除的小鼠在臼齿上产生额外的齿尖,并且其门齿表现出明显的类似臼齿的齿尖和根形态。分子分析确定了突变体门齿中 Shh 和 Bmp 信号的失调,并提示牙齿形状决定和形态发生过程的解耦。因此,门齿具有发育上受抑制的、类似于多尖齿的齿尖形态发生程序,这一程序是由于 Lrp4 活性的丧失而显现出来的。几种哺乳动物天然具有多尖的门齿,这表明哺乳动物具有形成多尖牙齿的能力,而与牙齿在口腔颌骨中的位置无关。局部釉质丧失可能是形成齿尖的一个中间步骤,而这两者都利用了 Lrp4 介导的信号通路。

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