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Evidence for the Nucleo-Apical Shuttling of a Beta-Catenin Like Plasmodium falciparum Armadillo Repeat Containing Protein

机译:β-连环蛋白像恶性疟原虫犰狳重复包含蛋白质的核-顶穿的证据。

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摘要

Eukaryotic Armadillo (ARM) repeat proteins are multifaceted with prominent roles in cell-cell adhesion, cytoskeletal regulation and intracellular signaling among many others. One such ARM repeat containing protein, ARM Repeats Only (ARO), has recently been demonstrated in both Toxoplasma (TgARO) and Plasmodium (PfARO) parasites to be targeted to the rhoptries during the late asexual stages. TgARO has been implicated to play an important role in rhoptry positioning i.e. directing the rhoptry towards the apical end of the parasite. Here, we report for the first time that PfARO exhibits a DNA binding property and a dynamic sub-cellular localization between the nucleus (early schizont) and rhoptry (late schizont) during the different stages of the asexual blood-stage life cycle. PfARO possesses a putative nuclear export signal (NES) and the nucleo-apical shuttling was sensitive to Leptomycin B (LMB) suggesting that the nuclear export was mediated by CRM1. Importantly, PfARO specifically bound an A-T rich DNA sequence of the P. falciparum Gyrase A (PfgyrA) gene, suggesting that the DNA binding specificity of PfARO is likely due to the AT-richness of the probe. This is a novel functional characteristic that has not been reported previously for any P. falciparum ARM containing protein and suggests a putative role for PfARO in gene regulation. This study describes for the first time a conserved P. falciparum ARM repeat protein with a high degree of functional versatility.
机译:真核犰狳(ARM)重复蛋白在细胞间粘附,细胞骨架调节和细胞内信号传导等许多方面均具有突出作用。最近在弓形虫(TgARO)和疟原虫(PfARO)寄生虫中都证明了一种这样的含有ARM重复序列的蛋白,即ARM Repeats Only(ARO),该蛋白在无性繁殖后期被靶向了该类植物。 TgARO已被暗示在钩虫定位中发挥重要作用,即将钩虫指向寄生虫的顶端。在这里,我们首次报道了PfARO在无性血液生命周期的不同阶段表现出DNA结合特性以及核(早期裂殖体)和Rhoptry(裂殖体后期)之间的动态亚细胞定位。 PfARO具有推定的核输出信号(NES),并且核顶梭对Leptomycin B(LMB)敏感,表明核输出是由CRM1介导的。重要的是,PfARO特异地结合了恶性疟原虫促旋酶A(PfgyrA)基因的富含A-T的DNA序列,表明PfARO的DNA结合特异性可能是由于探针的AT丰富性所致。这是一个新颖的功能特性,以前尚未对任何含有恶性疟原虫的ARM蛋白进行过报道,并暗示了PfARO在基因调控中的假定作用。这项研究首次描述了具有高度功能多样性的保守的恶性疟原虫ARM重复蛋白。

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