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首页> 外文期刊>Journal of Molecular Evolution >Molecular evolution and functionally important structures of molluscan Dermatopontin: Implications for the origins of molluscan shell matrix proteins
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Molecular evolution and functionally important structures of molluscan Dermatopontin: Implications for the origins of molluscan shell matrix proteins

机译:软体动物皮神经桥蛋白的分子进化和功能上重要的结构:对软体动物壳基质蛋白起源的启示。

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摘要

A major shell matrix protein originally obtained from a freshwater snail is a molluscan homologue of Dermatopontins, a group of Metazoan proteins also called TRAMP ( tyrosine-rich acidic matrix protein). We sequenced and identified 14 molluscan homologues of Dermatopontin from eight snail species belonging to the order Basommatophora and Stylommatophora. The bassommatophoran Dermatopontins fell into three types, one is suggested to be a shell matrix protein and the others are proteins having more general functions based on gene expression analyses. N-glycosylation is inferred to be important for the function involved in shell calcification, because potential N-glycosylation sites were found exclusively in the Dermatopontins considered as shell matrix proteins. The stylommatophoran Dermatopontins fell into two types, also suggested to comprise a shell matrix protein and a protein having a more general function. Phylogenetic analyses using maximum likelihood and Bayesian methods revealed that gene duplication events occurred independently in both basommatophoran and stylommatophoran lineages. These results suggest that the dermatopontin genes were co-opted for molluscan calcification at least twice independently after the divergence of basommatophoran and stylommatophoran lineages, or more recently than we have expected.
机译:最初从淡水蜗牛获得的主要壳基质蛋白是皮肤脱蛋白的软体动物同系物,这是一组后生蛋白,也称为TRAMP(富含酪氨酸的酸性基质蛋白)。我们从八个蜗牛物种,属于Basommatophora和Stylommatophora的顺序进行了测序,并鉴定了皮肤脱皮桥蛋白的14个软体动物同源物。弹子足动物的皮肤桥蛋白分为三种类型,一种是基于壳基质蛋白,另一种是基于基因表达分析具有更一般功能的蛋白。推测N-糖基化对于参与壳钙化的功能很重要,因为潜在的N-糖基化位点仅存在于被认为是壳基质蛋白的脱皮激素中。 stymatophoran Dermatopontins分为两种类型,也建议包含壳基质蛋白和具有更一般功能的蛋白。用最大似然法和贝叶斯方法进行的系统发育分析表明,基因重复事件在巴斯玛通植物体和茎生动物体谱系中独立发生。这些结果表明,在巴氏丝隐球蛋白和茎突丝裂球菌谱系分化之后,或者至少比我们预期的更晚,至少两次独立地选择了透皮蛋白基因进行软体动物钙化。

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