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Resolving the homology—function relationship through comparative genomics of membrane-trafficking machinery and parasite cell biology

机译:通过膜运输机器和寄生虫细胞生物学的比较基因组学来解决同源性与功能的关系

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摘要

With advances in DNA sequencing technology, it is increasingly common and tractable to informatically look for genes of interest in the genomic databases of parasitic organisms and infer cellular states. Assignment of a putative gene function based on homology to functionally characterized genes in other organisms, though powerful, relies on the implicit assumption of functional homology, i.e. that orthology indicates conserved function. Eukaryotes reveal a dazzling array of cellular features and structural organization, suggesting a concomitant diversity in their underlying molecular machinery. Significantly, examples of novel functions for pre-existing or new paralogues are not uncommon. Do these examples undermine the basic assumption of functional homology, especially in parasitic protists, which are often highly derived? Here we examine the extent to which functional homology exists between organisms spanning the eukaryotic lineage. By comparing membrane trafficking proteins between parasitic protists and traditional model organisms, where direct functional evidence is available, we find that function is indeed largely conserved between orthologues, albeit with significant adaptation arising from the unique biological features within each lineage.
机译:随着DNA测序技术的发展,在寄生生物的基因组数据库中推断感兴趣的基因并推断细胞状态的信息学越来越普遍且易于处理。将基于同源性的推定基因功能分配给其他生物中具有功能特征的基因,尽管功能强大,但仍依赖于功能同源性的隐含假设,即,正畸表明保守功能。真核生物揭示出令人眼花array乱的细胞特征和结构组织,表明其潜在的分子机制也伴随着多样性。值得注意的是,已有的或新的旁白的新颖功能的例子并不少见。这些例子是否破坏了功能同源性的基本假设,尤其是在寄生原生物中,它们通常是高度衍生的?在这里,我们研究了跨越真核细胞系的生物之间存在功能同源性的程度。通过比较寄生原生生物和传统模型生物之间的膜运输蛋白(可直接获得功能证据),我们发现直系同源物之间的功能确实得到了很大的保留,尽管由于每个谱系中独特的生物学特征而产生了显着的适应性。

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