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Peroxiredoxin 3 levels regulate a mitochondrial redox setpoint in malignant mesothelioma cells

机译:Peroxiredoxin 3水平可调节恶性间皮瘤细胞中的线粒体氧化还原设定值

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摘要

Peroxiredoxin 3 (PRX3), a typical 2-Cys peroxiredoxin located exclusively in the mitochondrial matrix, is the principal peroxidase responsible for metabolizing mitochondrial hydrogen peroxide, a byproduct of cellular respiration originating from the mitochondrial electron transport chain. Mitochondrial oxidants are produced in excess in cancer cells due to oncogenic transformation and metabolic reorganization, and signals through FOXM1 and other redox-responsive factors to support a hyper-proliferative state. Over-expression of PRX3 in cancer cells has been shown to counteract oncogene-induced senescence and support tumor cell growth and survival making PRX3 a credible therapeutic target. Using malignant mesothelioma (MM) cells stably expressing shRNAs to PRX3 we show that decreased expression of PRX3 alters mitochondrial structure, function and cell cycle kinetics. As compared to control cells, knockdown of PRX3 expression increased mitochondrial membrane potential, basal ATP production, oxygen consumption and extracellular acidification rates. shPRX3 MM cells failed to progress through the cell cycle compared to wild type controls, with increased numbers of cells in G2/M phase. Diminished PRX3 expression also induced mitochondrial hyperfusion similar to the DRP1 inhibitor mdivi-1. Cell cycle progression and changes in mitochondrial networking were rescued by transient expression of either catalase or mitochondrial-targeted catalase, indicating high levels of hydrogen peroxide contribute to perturbations in mitochondrial structure and function in shPRX3 MM cells. Our results indicate that PRX3 levels establish a redox set point that permits MM cells to thrive in response to increased levels of mROS, and that perturbing the redox status governed by PRX3 impairs proliferation by altering cell cycle-dependent dynamics between mitochondrial networking and energy metabolism.
机译:过氧化物酶3(PRX3)是专门位于线粒体基质中的典型2-Cys过氧化物酶,是负责代谢线粒体过氧化氢的主要过氧化物酶,过氧化酶是细胞呼吸作用的副产物,来自线粒体电子传输链。线粒体氧化剂由于致癌性转化和代谢重组而在癌细胞中过量产生,并通过FOXM1和其他氧化还原反应因子发出信号以支持过度增殖状态。已显示PRX3在癌细胞中的过度表达可抵消致癌基因诱导的衰老并支持肿瘤细胞的生长和存活,从而使PRX3成为可靠的治疗靶标。使用稳定表达PRX3的shRNA的恶性间皮瘤(MM)细胞,我们显示PRX3的表达降低会改变线粒体的结构,功能和细胞周期动力学。与对照细胞相比,PRX3表达的降低可增加线粒体膜电位,基础ATP产生,耗氧量和细胞外酸化率。与野生型对照相比,shPRX3 MM细胞无法在整个细胞周期中进展,G2 / M期的细胞数量有所增加。与DRP1抑制剂mdivi-1类似,PRX3表达降低也诱导线粒体过度融合。过氧化氢酶或靶向线粒体的过氧化氢酶的瞬时表达可挽救细胞周期进程和线粒体网络的变化,这表明高水平的过氧化氢有助于shPRX3 MM细胞中线粒体结构和功能的扰动。我们的结果表明PRX3的水平建立了一个氧化还原设定点,使MM细胞能够响应增加的mROS水平而壮成长,而扰动PRX3控制的氧化还原状态会通过改变线粒体网络与能量代谢之间的细胞周期依赖性动力学来损害增殖。

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