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Plasmodium actin is incompletely folded by heterologous protein-folding machinery and likely requires the native Plasmodium chaperonin complex to enter a mature functional state

机译:疟原虫肌动蛋白被异源蛋白质折叠机制折叠不完全可能需要天然的疟原虫伴侣蛋白复合物进入成熟的功能状态

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摘要

Actin filament turnover underpins several processes in the life cycle of the malaria parasite, Plasmodium falciparum. Polymerization and depolymerization are especially important for gliding motility, a substrate-dependent form of cell movement that underpins the protozoan parasite’s ability to disseminate and invade host cells. To date, given difficulties in extraction of native actins directly from parasites, much of our biochemical understanding of malarial actin has instead relied on recombinant protein extracted and purified from heterologous protein expression systems. Here, using in vitro transcription-translation methodologies and quantitative protein-binding assays, we explored the folding state of heterologously expressed P. falciparum actin 1 (PfACTI) with the aim of assessing the reliability of current recombinant-protein-based data. We demonstrate that PfACTI, when expressed in non-native systems, is capable of binding to and release from bacterial, yeast, and mammalian chaperonin complexes but appears to be incompletely folded. Characterization of the native Plasmodium folding machinery in silico, the chaperonin containing t-complex protein-1 complex, highlights key divergences between the different chaperonin systems that likely underpins this incomplete folded state. These results highlight the importance of characterizing actin’s folded state and raise concerns about the interpretation of actin polymerization kinetics based solely on protein derived from heterologous expression systems.—Olshina, M. A., Baumann, H., Willison, K. R., Baum, J. Plasmodium actin is incompletely folded by heterologous protein-folding machinery and likely requires the native Plasmodium chaperonin complex to enter a mature functional state.
机译:肌动蛋白丝的更新支持了疟原虫恶性疟原虫的生命周期中的几个过程。聚合和解聚对于滑行运动尤其重要,滑行运动是依赖于底物的细胞运动形式,可增强原生动物寄生虫传播和侵袭宿主细胞的能力。迄今为止,由于直接从寄生虫中提取天然肌动蛋白存在困难,我们对疟疾肌动蛋白的许多生化理解反而依赖于从异源蛋白表达系统提取和纯化的重组蛋白。在这里,使用体外转录翻译方法和定量蛋白质结合测定,我们探讨了异源表达的恶性疟原虫肌动蛋白1(PfACTI)的折叠状态,旨在评估当前基于重组蛋白的数据的可靠性。我们证明,PfACTI在非天然系统中表达时,能够与细菌,酵母和哺乳动物伴侣蛋白复合物结合并从中释放,但似乎折叠不完全。计算机上天然的疟原虫折叠机制的特征是含有伴侣蛋白t-1复合物的伴侣蛋白,突显了不同伴侣蛋白系统之间的关键差异,这可能是这种不完全折叠状态的基础。这些结果凸显了表征肌动蛋白折叠状态的重要性,并引起人们对仅基于衍生自异源表达系统的蛋白质的肌动蛋白聚合动力学解释的关注。—Olshina,MA,Baumann,H.,Willison,KR,Baum,J.疟原虫肌动蛋白被异源蛋白质折叠机制折叠不完全,可能需要天然疟原虫伴侣蛋白复合物进入成熟的功能状态。

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