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首页> 外文期刊>Journal of Molecular Biology >Cadherin superfamily proteins in Caenorhabditis elegans and Drosophilamelanogaster
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Cadherin superfamily proteins in Caenorhabditis elegans and Drosophilamelanogaster

机译:秀丽隐杆线虫和果蝇中的钙黏着蛋白超家族蛋白

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摘要

The ability to form selective cell-cell adhesions is an essential property of metazoan cells. Members of the cadherin superfamily are important regulators of this process in both vertebrates and invertebrates. With the advent of genome sequencing projects, determination of the full repertoire of cadherins available to an organism is possible and here we present the identification and analysis of the cadherin repertoires in the genomes of Caenorhabditis elegans and Drosophila melanogaster. Hidden Markov models of cadherin domains were matched to the protein sequences obtained from the translation of the predicted gene sequences. Matches were made to 21 C. elegans and 18 D. melanogaster sequences. Experimental and theoretical work on C. elegans sequences, and data from ESTs, show that three pairs of genes, and two triplets, should be merged to form five single genes. It also produced sequence changes at one or both of the 5' and 3' termini of half the sequences. Ln D. melanogaster it is probable that two of the cadherin genes should also be merged together and that three cadherin genes should be merged with other neighbouring genes. Of the 15 cadherin proteins found in C. elegans, 13 have the features of cell surface proteins, signal sequences and transmembrane helices; the other two have only signal sequences. Of the 17 in D. melanogaster, 11 at present have both features and another five have transmembrane helices. The evidence currently available suggests about one-third of the cadherins in the two organisms can be grouped into subfamilies in which all, or parts of, the molecules are conserved. Each organism also has a similar to 980 residue protein (CDH-11 and CG11059) with two cadherin domains and whose sequences match well over their entire length two proteins from human brain. Two proteins in C. elegans, HMR-1A and HMR-1B, and three in D. melanogaster, CadN, Shg and CG7527, have cytoplasmic domains homologous to those of the classical cadherin genes of chordates but their extracellular regions have different domain structures. Other common subclasses include the seven-helix membrane cadherins, Fat-like protocadherins and the Ret-like cadherins. At present, the remaining cadherins have no obvious similarities in their extracellular domain architecture or homologies to their cytoplasmic domains and may, therefore, represent species-specific or phylum-specific molecules.
机译:形成选择性细胞-细胞粘附的能力是后生细胞的基本特性。钙粘着蛋白超家族的成员在脊椎动物和无脊椎动物中都是该过程的重要调节剂。随着基因组测序项目的到来,有可能确定可用于生物的全部钙粘蛋白全谱,在这里,我们介绍了秀丽隐杆线虫和果蝇果蝇基因组中钙粘蛋白全谱的鉴定和分析。钙粘蛋白域的隐马尔可夫模型与从预测基因序列的翻译获得的蛋白质序列匹配。匹配了21个秀丽隐杆线虫和18个D.黑色素瘤序列。关于秀丽隐杆线虫序列的实验和理论工作以及来自EST的数据表明,应将三对基因和两个三胞胎合并以形成五个单基因。它还在一半序列的5'和3'末端之一或两者处产生序列改变。在黑腹果蝇中,两个钙粘蛋白基因可能也应合并在一起,而三个钙粘蛋白基因应与其他邻近基因合并。在秀丽隐杆线虫中发现的15种钙粘蛋白蛋白中,有13种具有细胞表面蛋白,信号序列和跨膜螺旋的特征。另外两个只有信号序列。在D. melanogaster的17个中,目前有11个具有两个特征,另外五个具有跨膜螺旋。目前可用的证据表明,两种生物中约有三分之一的钙粘蛋白可以分组为亚家族,其中全部或部分分子被保守。每个生物还具有类似于980个残基的蛋白质(CDH-11和CG11059),具有两个钙粘着蛋白结构域,其序列在整个长度上与人脑中的两个蛋白质完全匹配。秀丽隐杆线虫中的两种蛋白HMR-1A和HMR-1B,而黑线虫中的3种蛋白CadN,Shg和CG7527,其胞质结构域与经典的钙索蛋白钙索蛋白同源,但它们的胞外区具有不同的结构域。其他常见的亚类包括七螺旋膜钙粘蛋白,脂肪样原钙粘蛋白和Ret样钙粘蛋白。目前,其余的钙粘着蛋白在其胞外结构域或同源性上与它们的胞质结构域没有明显的相似性,因此可以代表物种特异性或门特异性分子。

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