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Differential Editosome Protein Function between Life Cycle Stages of Trypanosoma brucei

机译:布氏锥虫生命周期阶段之间的差异性Editosome蛋白功能。

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摘要

Uridine insertion and deletion RNA editing generates functional mitochondrial mRNAs in Trypanosoma brucei. The mRNAs are differentially edited in bloodstream form (BF) and procyclic form (PF) life cycle stages, and this correlates with the differential utilization of glycolysis and oxidative phosphorylation between the stages. The mechanism that controls this differential editing is unknown. Editing is catalyzed by multiprotein ∼20S editosomes that contain endonuclease, 3′-terminal uridylyltransferase, exonuclease, and ligase activities. These editosomes also contain KREPB5 and KREPA3 proteins, which have no functional catalytic motifs, but they are essential for parasite viability, editing, and editosome integrity in BF cells. We show here that repression of KREPB5 or KREPA3 is also lethal in PF, but the effects on editosome structure differ from those in BF. In addition, we found that point mutations in KREPB5 or KREPA3 differentially affect cell growth, editosome integrity, and RNA editing between BF and PF stages. These results indicate that the functions of KREPB5 and KREPA3 editosome proteins are adjusted between the life cycle stages. This implies that these proteins are involved in the processes that control differential editing and that the 20S editosomes differ between the life cycle stages.
机译:尿苷插入和缺失RNA编辑可在布鲁氏锥虫中产生功能性线粒体mRNA。 mRNA在血流形式(BF)和前环形式(PF)生命周期阶段进行差异编辑,这与各阶段之间糖酵解和氧化磷酸化的差异利用相关。控制这种差异编辑的机制是未知的。含有内切核酸酶,3'-末端尿酸转移酶,核酸外切酶和连接酶活性的多蛋白〜20S编辑体可催化编辑。这些编辑小体还包含KREPB5和KREPA3蛋白,它们没有功能性催化基序,但是它们对于BF细胞中的寄生虫生存力,编辑和编辑小体完整性至关重要。我们在这里表明,KPFB5或KREPA3的抑制在PF中也是致命的,但对编辑体结构的影响与BF不同。此外,我们发现KREPB5或KREPA3中的点突变差异影响细胞生长,糖体完整性以及BF和PF期之间的RNA编辑。这些结果表明,KREPB5和KREPA3编辑体蛋白的功能在生命周期阶段之间进行了调整。这意味着这些蛋白质参与了控制差异编辑的过程,并且20S编辑体在生命周期阶段之间有所不同。

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