首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Mineralized tissue and vertebrate evolution: the secretory calcium-binding phosphoprotein gene cluster.
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Mineralized tissue and vertebrate evolution: the secretory calcium-binding phosphoprotein gene cluster.

机译:矿化的组织和脊椎动物的进化:分泌性钙结合磷蛋白基因簇。

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摘要

Gene duplication creates evolutionary novelties by using older tools in new ways. We have identified evidence that the genes for enamel matrix proteins (EMPs), milk caseins, and salivary proteins comprise a family descended from a common ancestor by tandem gene duplication. These genes remain linked, except for one EMP gene, amelogenin. These genes show common structural features and are expressed in ontogenetically similar tissues. Many of these genes encode secretory Ca-binding phosphoproteins, which regulate the Ca-phosphate concentration of the extracellular environment. By exploiting this fundamental property, these genes have subsequently diversified to serve specialized adaptive functions. Casein makes milk supersaturated with Ca-phosphate, which was critical to the successive mammalian divergence. The innovation of enamel led to mineralized feeding apparatus, which enabled active predation of early vertebrates. The EMP genes comprise a subfamily not identified previously. A set of genes for dentine and bone extracellular matrix proteins constitutes an additional cluster distal to the EMP gene cluster, with similar structural features to EMP genes. The duplication and diversification of the primordial genes for enameldentinebone extracellular matrix may have been important in core vertebrate feeding adaptations, the mineralized skeleton, the evolution of saliva, and, eventually, lactation. The order of duplication events may help delineate early events in mineralized skeletal formation, which is a major characteristic of vertebrates.
机译:基因复制通过以新方式使用旧工具创造了进化上的新颖性。我们已经确定了证据,搪瓷基质蛋白(EMPs),酪蛋白奶和唾液蛋白的基因组成了一个家族,这个家族是通过串联基因复制从共同祖先继承而来的。除了一个EMP基因amelogenin,这些基因保持联系。这些基因显示出共同的结构特征,并在个体发育相似的组织中表达。这些基因中的许多编码分泌性的钙结合磷蛋白,其调节细胞外环境的钙磷酸盐浓度。通过利用这种基本特性,这些基因随后多样化以服务于专门的适应功能。酪蛋白使牛奶中的钙磷酸盐过饱和,这对于连续的哺乳动物分化至关重要。珐琅的创新导致了矿化的饲养设备,从而使早期脊椎动物得以活跃捕食。 EMP基因包含先前未鉴定的亚家族。牙本质和骨细胞外基质蛋白的一组基因构成了EMP基因簇远端的另一个簇,其结构特征与EMP基因相似。牙釉质骨细胞外基质的原始基因的复制和多样化可能在脊椎动物的摄食适应,骨骼矿化,唾液进化以及最终泌乳中很重要。复制事件的顺序可能有助于勾勒出矿化骨骼形成中的早期事件,这是脊椎动物的主要特征。

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