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Small Amounts of Isotope-reinforced Polyunsaturated Fatty Acids Suppress Lipid Autoxidation

机译:少量同位素增强多不饱和脂肪酸抑制脂质自氧化

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摘要

Polyunsaturated fatty acids (PUFAs) undergo autoxidation and generate reactive carbonyl compounds that are toxic to cells and associated with apoptotic cell death, age-related neurodegenerative diseases, and atherosclerosis. PUFA autoxidation is initiated by the abstraction of bis-allylic hydrogen atoms. Replacement of the bis-allylic hydrogen atoms with deuterium atoms (termed site-specific isotope-reinforcement) arrests PUFA autoxidation due to the isotope effect. Kinetic competition experiments show that the kinetic isotope effect for the propagation rate constant of Lin autoxidation compared to that of 11,11-D2-Lin is 12.8 ± 0.6. We investigate the effects of different isotope-reinforced PUFAs and natural PUFAs on the viability of coenzyme Q-deficient Saccharomyces cerevisiae coq mutants and wild-type yeast subjected to copper stress. Cells treated with a C11-BODIPY fluorescent probe to monitor lipid oxidation products show that lipid peroxidation precedes the loss of viability due to H-PUFA toxicity. We show that replacement of just one bis-allylic hydrogen atom with deuterium is sufficient to arrest lipid autoxidation. In contrast, PUFAs reinforced with two deuterium atoms at mono-allylic sites remain susceptible to autoxidation. Surprisingly, yeast treated with a mixture of approximately 20%:80% isotope-reinforced D-PUFA: natural H-PUFA are protected from lipid autoxidation-mediated cell killing. The findings reported here show that inclusion of only a small fraction of PUFAs deuterated at the bis-allylic sites is sufficient to profoundly inhibit the chain reaction of non-deuterated PUFAs in yeast.
机译:多不饱和脂肪酸(PUFA)经过自氧化,产生对细胞有毒的反应性羰基化合物,与凋亡细胞死亡,年龄相关的神经变性疾病和动脉粥样硬化相关。通过双烯丙基氢原子的抽象来启动PUFA自动氧化。用氘原子替换双烯丙基氢原子(称为特异性同位素 - 增强)由于同位素效应而阻止PUFA自动氧化。动力学竞争实验表明,与11,11-D2-LIN相比,林自动氧化的传播速率常数的动力学同位素效应为12.8±0.6。我们研究了不同同位素增强的PUFA和天然PUFA对辅酶Q缺乏酿酒酵母CAQ突变体和野生型酵母进行铜应力的影响。用C11-BOBIPY荧光探针处理的细胞监测脂质氧化产品,表明脂质过氧化在由于H-PUFA毒性引起的活力损失。我们表明,用氘代替一个双烯丙基氢原子足以捕获脂质自氧化。相比之下,在单烯丙基位点上用两个氘原子加固的Pufas仍然易于自氧化。令人惊讶的是,用约20%的混合物治疗酵母,约20%:80%同位素增强D-PUFA:自然H-PUFA受到脂质自动氧化介导的细胞杀伤。此处的发现表明,在双烯丙基遗址上仅携带的小数一小部分PUFA足以深受敏锐抑制酵母中非氘代PUFA的链条反应。

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