首页> 美国卫生研究院文献>other >Inhibition of Mitochondrial Complex I Leads to Decreased Motility and Membrane Integrity Related to Increased Hydrogen Peroxide and Reduced ATP Production while the Inhibition of Glycolysis Has Less Impact on Sperm Motility
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Inhibition of Mitochondrial Complex I Leads to Decreased Motility and Membrane Integrity Related to Increased Hydrogen Peroxide and Reduced ATP Production while the Inhibition of Glycolysis Has Less Impact on Sperm Motility

机译:抑制线粒体复合物I导致与过氧化氢增加和ATP生成减少相关的动力和膜完整性降低而抑制糖酵解对精子动力的影响较小

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摘要

Mitochondria have been proposed as the major source of reactive oxygen species in somatic cells and human spermatozoa. However, no data regarding the role of mitochondrial ROS production in stallion spermatozoa are available. To shed light on the role of the mitochondrial electron transport chain in the origin of oxidative stress in stallion spermatozoa, specific inhibitors of complex I (rotenone) and III (antimycin-A) were used. Ejaculates from seven Andalusian stallions were collected and incubated in BWW media at 37°C in the presence of rotenone, antimycin-A or control vehicle. Incubation in the presence of these inhibitors reduced sperm motility and velocity (CASA analysis) (p<0.01), but the effect was more evident in the presence of rotenone (a complex I inhibitor). These inhibitors also decreased ATP content. The inhibition of complexes I and III decreased the production of reactive oxygen species (p<0.01) as assessed by flow cytometry after staining with CellRox deep red. This observation suggests that the CellRox probe mainly identifies superoxide and that superoxide production may reflect intense mitochondrial activity rather than oxidative stress. The inhibition of complex I resulted in increased hydrogen peroxide production (p<0.01). The inhibition of glycolysis resulted in reduced sperm velocities (p<0.01) without an effect on the percentage of total motile sperm. Weak and moderate (but statistically significant) positive correlations were observed between sperm motility, velocity and membrane integrity and the production of reactive oxygen species. These results indicate that stallion sperm rely heavily on oxidative phosphorylation (OXPHOS) for the production of ATP for motility but also require glycolysis to maintain high velocities. These data also indicate that increased hydrogen peroxide originating in the mitochondria is a mechanism involved in stallion sperm senescence.
机译:线粒体被认为是体细胞和人类精子中活性氧的主要来源。但是,没有关于线粒体ROS产生在种马精子中的作用的数据。为了阐明线粒体电子传输链在种马精子氧化应激起源中的作用,使用了复合物I(鱼藤酮)和III(抗霉素-A)的特异性抑制剂。收集来自七个安达卢西亚种马的射精,并在鱼藤酮,抗霉素-A或对照载体存在下于37°C在BWW培养基中孵育。在这些抑制剂的存在下孵育会降低精子活力和速度(CASA分析)(p <0.01),但在鱼藤酮(复合I抑制剂)的存在下效果更明显。这些抑制剂也降低了ATP含量。用CellRox深红色染色后,通过流式细胞仪评估,对复合物I和III的抑制作用可降低活性氧的产生(p <0.01)。该观察结果表明CellRox探针主要识别超氧化物,并且超氧化物的产生可能反映强烈的线粒体活性而不是氧化应激。复合物I的抑制导致过氧化氢产生增加(p <0.01)。糖酵解的抑制导致精子速度降低(p <0.01),而对总运动精子的百分比没有影响。观察到精子活力,速度和膜完整性与活性氧产生之间的弱和中度(但有统计学意义)正相关。这些结果表明,种马精子严重依赖于氧化磷酸化(OXPHOS)来产生能动性的ATP,但还需要糖酵解来维持高速。这些数据还表明,起源于线粒体的过氧化氢增加是种马精子衰老的机制。

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