首页> 外文期刊>Toxicology in vitro: an international journal published in association with BIBRA >Impairment of mitochondrial bioenergetics and permeability transition induction caused by major long-chain fatty acids accumulating in VLCAD deficiency in skeletal muscle as potential pathomechanisms of myopathy
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Impairment of mitochondrial bioenergetics and permeability transition induction caused by major long-chain fatty acids accumulating in VLCAD deficiency in skeletal muscle as potential pathomechanisms of myopathy

机译:骨骼肌大型长链脂肪酸主要长链脂肪酸引起的线粒体生物能源和渗透性过渡诱导的损害,骨骼肌缺陷的潜在土传疗法

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摘要

cis-5-Tetradecenoic (cis-5) and myristic (Myr) acids predominantly accumulate in patients affected by very long-chain acyl-CoA dehydrogenase (VLCAD) deficiency. They commonly manifest myopathy with muscular pain and rhabdomyolysis, whose underlying mechanisms are poorly known. Thus, in the present study we investigated the effects of cis-5 and Myr on mitochondrial bioenergetics and Ca2+ homeostasis in rat skeletal muscle. cis-5 and Myr decreased ADP-stimulated (state 3) and CCCP-stimulated (uncoupled) respiration, especially when mitochondria were supported by NADH-linked as compared to FADH(2)-linked substrates. In contrast, these fatty acids increased resting respiration (state 4). Similar effects were observed in skeletal muscle fibers therefore validating the data obtained with isolated mitochondria. Furthermore, cis-S and Myr markedly decreased mitochondrial membrane potential and Ca2+ retention capacity that were avoided by cyclosporin A plus ADP and ruthenium red, indicating that cis-5 and Myr induce mitochondrial permeability transition (MPT). Finally, docosanoic acid did not disturb mitochondria] homeostasis, indicating selective effects for Myr and cis-5. Taken together, our findings indicate that major long-chain fatty acids accumulating in VLCAD deficiency behave as metabolic inhibitors, uncouplers of oxidative phosphorylation and MPT inducers. It is presumed that these pathomechanisms contribute to the muscular symptoms and rhabdomyolysis observed in patients affected by VLCAD deficiency.
机译:CIS-5-四核(CIS-5)和肉豆蔻酸主要积聚在受非常长链酰基 - COA脱氢酶(VLCAD)缺乏影响的患者中。它们通常表现出肌肉疼痛和横纹肌溶解,其潜在机制是众所周知的。因此,在本研究中,我们研究了CIS-5和MYR在大鼠骨骼肌中对线粒体生物植物和CA2 +稳态的影响。 CIS-5和MYR降低了ADP刺激(第3状态3)和CCCP刺激(未替换)呼吸,特别是当与FADH(2)链状的基材相比,当通过NADH连接的链接支撑线粒体时。相反,这些脂肪酸增加了休息呼吸(状态4)。在骨骼肌纤维中观察到类似的效果,因此验证用分离的线粒体获得的数据。此外,CIS-S和MYR显着降低了线粒体膜电位和CA2 +保留能力,所述Cycosporin A加ADP和Ruthenium Red避免,表明CIS-5和MYR诱导线粒体渗透率转变(MPT)。最后,DocosanonoCator没有干扰线粒体,表明MYR和CIS-5的选择性效果。我们的研究结果表明,在VLCAD缺乏中积累的主要长链脂肪酸表现为代谢抑制剂,氧化磷酸化和MPT诱导剂的脱象。推测,这些土地机制有助于受VPRCAD缺乏影响的患者观察到的肌肉症状和横纹肌溶解。

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