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脊椎动物成簇原钙黏蛋白基因的比较基因组学与多样化选择

Comparative genomics and diversifying selection of the clustered vertebrate protocadherin genes.

作者信息

Wu Qiang

机构信息

Department of Human Genetics, University of Utah, Salt Lake City, 84112, USA.

出版信息

Genetics. 2005 Apr;169(4):2179-88. doi: 10.1534/genetics.104.037606. Epub 2005 Mar 2.

Abstract

To explain the mechanism for specifying diverse neuronal connections in the brain, Sperry proposed that individual cells carry chemoaffinity tags on their surfaces. The enormous complexity of these connections requires a tremendous diversity of cell-surface proteins. A large number of neural transmembrane protocadherin (Pcdh) proteins is encoded by three closely linked human and mouse gene clusters (alpha, beta, and gamma). To gain insight into Pcdh evolution, I performed comprehensive comparative cDNA and genomic DNA analyses for the three clusters in the chimpanzee, rat, and zebrafish genomes. I found that there are species-specific duplications in vertebrate Pcdh genes and that additional diversity is generated through alternative splicing within the zebrafish "variable" and "constant" regions. Moreover, different codons (sites) in the mammalian Pcdh ectodomains (ECs) are under diversifying selection, with some under diversity-enhancing positive Darwinian selection and others, including calcium-binding sites, under strong purifying selection. Interestingly, almost all positively selected codon positions are located on the surface of ECs 2 and 3. These diversified residues likely play an important role in combinatorial interactions of Pcdh proteins, which could provide the staggering diversity required for neuronal connections in the brain. These results also suggest that adaptive selection is an additional evolutionary factor for increasing Pcdh diversity.

摘要

为了解释大脑中指定多样神经元连接的机制,斯佩里提出单个细胞在其表面携带化学亲和标签。这些连接的巨大复杂性需要细胞表面蛋白的巨大多样性。大量神经跨膜原钙黏蛋白(Pcdh)由三个紧密连锁的人类和小鼠基因簇(α、β和γ)编码。为深入了解Pcdh的进化,我对黑猩猩、大鼠和斑马鱼基因组中的这三个基因簇进行了全面的比较cDNA和基因组DNA分析。我发现脊椎动物Pcdh基因存在物种特异性重复,并且通过斑马鱼“可变”和“恒定”区域内的可变剪接产生了额外的多样性。此外,哺乳动物Pcdh胞外域(ECs)中的不同密码子(位点)处于多样化选择之下,一些处于增强多样性的正达尔文选择之下,而其他一些,包括钙结合位点,则处于强烈的纯化选择之下。有趣的是,几乎所有正选择的密码子位置都位于ECs 2和3的表面。这些多样化的残基可能在Pcdh蛋白的组合相互作用中起重要作用,这可以提供大脑中神经元连接所需的惊人多样性。这些结果还表明适应性选择是增加Pcdh多样性的另一个进化因素。

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