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The actin multigene family of Paramecium tetraurelia

机译:草履虫的肌动蛋白多基因家族

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Background A Paramecium tetraurelia pilot genome project, the subsequent sequencing of a Megabase chromosome as well as the Paramecium genome project aimed at gaining insight into the genome of Paramecium. These cells display a most elaborate membrane trafficking system, with distinct, predictable pathways in which actin could participate. Previously we had localized actin in Paramecium; however, none of the efforts so far could proof the occurrence of actin in the cleavage furrow of a dividing cell, despite the fact that actin is unequivocally involved in cell division. This gave a first hint that Paramecium may possess actin isoforms with unusual characteristics. The genome project gave us the chance to search the whole Paramecium genome, and, thus, to identify and characterize probably all actin isoforms in Paramecium. Results The ciliated protozoan, P. tetraurelia, contains an actin multigene family with at least 30 members encoding actin, actin-related and actin-like proteins. They group into twelve subfamilies; a large subfamily with 10 genes, seven pairs and one trio with > 82% amino acid identity, as well as three single genes. The different subfamilies are very distinct from each other. In comparison to actins in other organisms, P. tetraurelia actins are highly divergent, with identities topping 80% and falling to 30%. We analyzed their structure on nucleotide level regarding the number and position of introns. On amino acid level, we scanned the sequences for the presence of actin consensus regions, for amino acids of the intermonomer interface in filaments, for residues contributing to ATP binding, and for known binding sites for myosin and actin-specific drugs. Several of those characteristics are lacking in several subfamilies. The divergence of P. tetraurelia actins and actin-related proteins between different P. tetraurelia subfamilies as well as with sequences of other organisms is well represented in a phylogenetic tree, where P. tetraurelia sequences only partially cluster. Conclusion Analysis of different features on nucleotide and amino acid level revealed striking differences in isoforms of actin and actin-related proteins in P. tetraurelia, both within the organism and in comparison to other organisms. This diversification suggests unprecedented specification in localization and function within a unicellular eukaryote.
机译:背景技术草履虫草履虫试点基因组计划,Megabase染色体的后续测序以及草履虫菌基因组计划,旨在深入了解草履虫草的基因组。这些细胞表现出最复杂的膜运输系统,具有不同的,可预测的肌动蛋白可以参与的途径。以前我们在草履虫中定位肌动蛋白。然而,尽管肌动蛋白明确参与了细胞分裂,但到目前为止,尚无任何证据可以证明肌动蛋白在分裂细胞的分裂沟中的发生。这首次提示草履虫可能具有肌动蛋白同工型,具有异常特征。基因组计划使我们有机会搜索整个草履虫的基因组,从而鉴定和表征草履虫中的所有肌动蛋白同工型。结果纤毛虫原生动物四尿假单胞菌包含一个肌动蛋白多基因家族,至少有30个成员编码肌动蛋白,肌动蛋白相关蛋白和肌动蛋白样蛋白。他们分为十二个亚科。一个具有10个基因,7对和1个三重奏的大亚科,其中三重奏具有> 82%的氨基酸同一性,以及3个单基因。不同的亚科彼此非常不同。与其他生物中的肌动蛋白相比,四脲疟原虫肌动蛋白高度不同,同一性超过80%,下降到30%。我们就内含子的数量和位置在核苷酸水平上分析了它们的结构。在氨基酸水平上,我们扫描了肌动蛋白共有区,细丝中单体界面的氨基酸,有助于ATP结合的残基以及肌球蛋白和肌动蛋白特异性药物的已知结合位点的序列。在几个亚家族中缺少其中几个特征。在系统进化树中很好地表示了四单脲菌肌动蛋白和肌动蛋白相关蛋白在不同的四单脲菌亚科之间以及与其他生物序列之间的差异。结论对核苷酸和氨基酸水平的不同特征进行分析后发现,在该生物体内以及与其他生物相比,四脲假单胞菌肌动蛋白和肌动蛋白相关蛋白的同工型存在显着差异。这种多样化暗示了单细胞真核生物在定位和功能方面的空前规范。

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