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DDX3 DEAD-box RNA helicase plays a central role in mitochondrial protein quality control in Leishmania

机译:DDX3 DEAD-box RNA解旋酶在利什曼原虫的线粒体蛋白质质量控​​制中起着核心作用

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摘要

DDX3 is a highly conserved member of ATP-dependent DEAD-box RNA helicases with multiple functions in RNA metabolism and cellular signaling. Here, we describe a novel function for DDX3 in regulating the mitochondrial stress response in the parasitic protozoan Leishmania. We show that genetic inactivation of DDX3 leads to the accumulation of mitochondrial reactive oxygen species (ROS) associated with a defect in hydrogen peroxide detoxification. Upon stress, ROS production is greatly enhanced, causing mitochondrial membrane potential loss, mitochondrial fragmentation, and cell death. Importantly, this phenotype is exacerbated upon oxidative stress in parasites forced to use the mitochondrial oxidative respiratory machinery. Furthermore, we show that in the absence of DDX3, levels of major components of the unfolded protein response as well as of polyubiquitinated proteins increase in the parasite, particularly in the mitochondrion, as an indicator of mitochondrial protein damage. Consistent with these findings, immunoprecipitation and mass-spectrometry studies revealed potential interactions of DDX3 with key components of the cellular stress response, particularly the antioxidant response, the unfolded protein response, and the AAA-ATPase p97/VCP/Cdc48, which is essential in mitochondrial protein quality control by driving proteosomal degradation of polyubiquitinated proteins. Complementation studies using DDX3 deletion mutants lacking conserved motifs within the helicase core support that binding of DDX3 to ATP is essential for DDX3's function in mitochondrial proteostasis. As a result of the inability of DDX3-depleted Leishmania to recover from ROS damage and to survive various stresses in the host macrophage, parasite intracellular development was impaired. Collectively, these observations support a central role for the Leishmania DDX3 homolog in preventing ROS-mediated damage and in maintaining mitochondrial protein quality control.
机译:DDX3是ATP依赖的DEAD-box RNA解旋酶的高度保守成员,在RNA代谢和细胞信号转导中具有多种功能。在这里,我们描述了DDX3调节寄生虫原生动物利什曼原虫中线粒体应激反应的新功能。我们显示DDX3的遗传失活导致与过氧化氢解毒缺陷相关的线粒体活性氧(ROS)的积累。在压力下,ROS的产生会大大增加,从而导致线粒体膜电位损失,线粒体碎裂和细胞死亡。重要的是,这种表型在被迫使用线粒体氧化呼吸机制的寄生虫中受到氧化应激后会加剧。此外,我们表明,在没有DDX3的情况下,未折叠的蛋白质应答以及多聚泛素化蛋白质的主要成分的水平在寄生虫中增加,特别是在线粒体中,作为线粒体蛋白质损伤的指标。与这些发现一致的是,免疫沉淀和质谱研究揭示了DDX3与细胞应激反应的关键成分的潜在相互作用,尤其是抗氧化剂反应,未折叠的蛋白质反应以及AAA-ATPase p97 / VCP / Cdc48,这在细胞凋亡中至关重要。通过驱动蛋白体降解多泛素化蛋白来控制线粒体蛋白的质量。使用在解旋酶核心内缺乏保守基序的DDX3缺失突变体进行的补充研究支持DDX3与ATP的结合对于DDX3在线粒体蛋白稳态中的功能至关重要。由于缺乏DDX3的利什曼原虫无法从ROS损伤中恢复并无法抵抗宿主巨噬细胞中的各种压力,因此寄生虫的细胞内发育受到损害。总体而言,这些观察结果支持利什曼原虫DDX3同源物在预防ROS介导的损伤和维持线粒体蛋白质质量控​​制中的重要作用。

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