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首页> 外文期刊>Aquatic Toxicology >Cadmium exposure affects mitochondrial bioenergetics and gene expression of key mitochondrial proteins in the eastern oyster Crassostrea virginica Gmelin (Bivalvia: Ostreidae)
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Cadmium exposure affects mitochondrial bioenergetics and gene expression of key mitochondrial proteins in the eastern oyster Crassostrea virginica Gmelin (Bivalvia: Ostreidae)

机译:镉暴露影响东部牡蛎Crassostrea virginica Gmelin(双壳纲:Ostreidae)的线粒体生物能和关键线粒体蛋白的基因表达

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摘要

Cadmium is a ubiquitous and extremely toxic metal, which strongly affects mitochondrial function of aquatic organisms in vitro; however, nothing is known about the in vivo effects of sublethal concentrations of this metal on mitochondrial bioenergetics. We have studied the effects of exposure to 0 (control) or 25 microg L-1 (Cd-exposed) Cd2+ on mitochondrial function and gene expression of key mitochondrial proteins in the eastern oyster Crassostrea virginica. Cadmium exposure in vivo resulted in considerable accumulation of cadmium in oyster mitochondria and in a significant decrease of ADP-stimulated respiration (state 3) by 30% indicating impaired capacity for ATP production. The decrease in state 3 respiration was similar to the level of inhibition expected from the direct effects of cadmium accumulated in oyster mitochondria. On the other hand, while no effect on proton leak was expected based on the mitochondrial accumulation of cadmium, Cd-exposed oysters in fact showed a significant decline of the proton leak rate (state 4+respiration) by 40%. This suggested a downregulation of proton leak, which correlated with a decrease in mRNA expression of a mitochondrial uncoupling protein UCP6 and two other potential uncouplers, mitochondrial substrate carriers MSC-1 and MSC-2. Expression of other key mitochondrial proteins including cytochrome c oxidase, adenine nucleotide transporter and voltage dependent anion channel was not affected by cadmium exposure. Adenylate energy charge (AEC) was significantly lower in Cd-exposed oysters; however, this was due to higher steady state ADP levels and not to the decrease in tissue ATP levels. Our data show that adjustment of the proton leak in cadmium-exposed oysters may be a compensatory mechanism, which allows them to maintain normal mitochondrial coupling and ATP levels despite the cadmium-induced inhibition of capacity for ATP production.
机译:镉是一种普遍存在且剧毒的金属,在体外会强烈影响水生生物的线粒体功能。然而,关于致死浓度的这种金属在体内对线粒体生物能学的影响尚无定论。我们已经研究了暴露于0(对照)或25 microg L-1(暴露于Cd的Cd2 +)对东部牡蛎Crassostrea virginica线粒体功能和关键线粒体蛋白基因表达的影响。体内镉的暴露导致牡蛎线粒体中镉的大量积累,ADP刺激的呼吸作用(状态3)显着降低30%,表明ATP生产能力受损。状态3呼吸的减少类似于牡蛎线粒体中镉积累的直接作用所预期的抑制水平。另一方面,尽管基于线粒体镉的积累,预计不会对质子泄漏产生影响,但暴露于Cd的牡蛎实际上显示质子泄漏率(状态4 +呼吸)显着下降40%。这表明质子泄漏的下调,与线粒体解偶联蛋白UCP6和其他两个潜在的解偶联剂,线粒体底物载体MSC-1和MSC-2的mRNA表达下降有关。镉暴露不影响其他关键线粒体蛋白的表达,包括细胞色素c氧化酶,腺嘌呤核苷酸转运蛋白和电压依赖性阴离子通道。镉暴露的牡蛎中的腺苷酸能电荷(AEC)显着降低。然而,这是由于较高的稳态ADP水平,而不是由于组织ATP水平的降低。我们的数据表明,对暴露于镉的牡蛎质子泄漏的调节可能是一种补偿机制,尽管镉诱导了对ATP产生能力的抑制,但它可以使它们保持正常的线粒体偶联和ATP水平。

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