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布氏锥虫中的动力蛋白样蛋白:两个旁系同源物之间的分工?

Dynamin-like proteins in Trypanosoma brucei: A division of labour between two paralogs?

作者信息

Benz Corinna, Stříbrná Eva, Hashimi Hassan, Lukeš Julius

机构信息

Faculty of Sciences, University of South Bohemia, České Budějovice (Budweis), Czech Republic.

Institute of Parasitology, Biology Centre, Czech Academy of Sciences, České Budějovice (Budweis), Czech Republic.

出版信息

PLoS One. 2017 May 8;12(5):e0177200. doi: 10.1371/journal.pone.0177200. eCollection 2017.

Abstract

Dynamins and dynamin-like proteins (DLPs) belong to a family of large GTPases involved in membrane remodelling events. These include both fusion and fission processes with different dynamin proteins often having a specialised function within the same organism. Trypanosoma brucei is thought to have only one multifunctional DLP (TbDLP). While this was initially reported to function in mitochondrial division only, an additional role in endocytosis and cytokinesis was later also proposed. Since there are two copies of TbDLP present in the trypanosome genome, we investigated potential functional differences between these two paralogs by re-expressing either protein in a TbDLP RNAi background. These paralogs, called TbDLP1 and TbDLP2, are almost identical bar a few amino acid substitutions. Our results, based on cell lines carrying tagged and RNAi-resistant versions of each protein, show that overexpression of TbDLP1 alone is able to rescue the observed endocytosis and growth defects in the mammalian bloodstream form (BSF) of the parasite. While TbDLP2 shows no rescue in our experiments in BSF, this might also be due to lower expression levels of the protein in this life stage. In contrast, both TbDLP proteins apparently play more complementary roles in the insect procyclic form (PCF) since neither TbDLP1 nor TbDLP2 alone can fully restore wildtype growth and morphology in TbDLP-depleted parasites.

摘要

发动蛋白和发动蛋白样蛋白(DLP)属于参与膜重塑事件的大型GTP酶家族。这些事件包括融合和裂变过程,不同的发动蛋白在同一生物体中通常具有特定功能。布氏锥虫被认为只有一种多功能DLP(TbDLP)。虽然最初报道它仅在线粒体分裂中起作用,但后来也有人提出它在胞吞作用和胞质分裂中具有额外作用。由于锥虫基因组中存在两个TbDLP拷贝,我们通过在TbDLP RNA干扰背景下重新表达这两种蛋白,研究了这两个旁系同源物之间潜在的功能差异。这两个旁系同源物分别称为TbDLP1和TbDLP2,除了少数氨基酸替换外几乎完全相同。我们基于携带每种蛋白的标记和RNA干扰抗性版本的细胞系的研究结果表明,单独过表达TbDLP1能够挽救寄生虫哺乳动物血流形式(BSF)中观察到的胞吞作用和生长缺陷。虽然在我们对BSF的实验中TbDLP2没有显示出挽救作用,但这也可能是由于该蛋白在这个生命阶段的表达水平较低。相比之下,两种TbDLP蛋白在昆虫前循环形式(PCF)中显然发挥了更多互补作用,因为单独的TbDLP1和TbDLP2都不能完全恢复TbDLP缺失的寄生虫的野生型生长和形态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae07/5421789/456c8d58010e/pone.0177200.g001.jpg

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