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阿魏酸松柏醇酯在泛醌循环水平特异性抑制琥珀酸泛醌还原酶。

Ferulenol specifically inhibits succinate ubiquinone reductase at the level of the ubiquinone cycle.

作者信息

Lahouel Mesbah, Zini Roland, Zellagui Ammar, Rhouati Salah, Carrupt Pierre-Alain, Morin Didier

机构信息

Département de pharmacologie et phytochimie, Université de Jijel, Algeria.

出版信息

Biochem Biophys Res Commun. 2007 Mar 30;355(1):252-7. doi: 10.1016/j.bbrc.2007.01.145. Epub 2007 Feb 2.

Abstract

The natural compound ferulenol, a sesquiterpene prenylated coumarin derivative, was purified from Ferula vesceritensis and its mitochondrial effects were studied. Ferulenol caused inhibition of oxidative phoshorylation. At low concentrations, ferulenol inhibited ATP synthesis by inhibition of the adenine nucleotide translocase without limitation of mitochondrial respiration. At higher concentrations, ferulenol inhibited oxygen consumption. Ferulenol caused specific inhibition of succinate ubiquinone reductase without altering succinate dehydrogenase activity of the complex II. This inhibition results from a limitation of electron transfers initiated by the reduction of ubiquinone to ubiquinol in the ubiquinone cycle. This original mechanism of action makes ferulenol a useful tool to study the physiological role and the mechanism of electron transfer in the complex II. In addition, these data provide an additional mechanism by which ferulenol may alter cell function and demonstrate that mitochondrial dysfunction is an important determinant in Ferula plant toxicity.

摘要

天然化合物阿魏醇是一种倍半萜烯基化香豆素衍生物,从阿魏(Ferula vesceritensis)中纯化得到,并对其线粒体效应进行了研究。阿魏醇可抑制氧化磷酸化。在低浓度时,阿魏醇通过抑制腺嘌呤核苷酸转位酶来抑制ATP合成,而不限制线粒体呼吸。在较高浓度时,阿魏醇抑制氧气消耗。阿魏醇可特异性抑制琥珀酸泛醌还原酶,而不改变复合物II的琥珀酸脱氢酶活性。这种抑制是由于泛醌循环中泛醌还原为泛醇引发的电子传递受限所致。这种独特的作用机制使阿魏醇成为研究复合物II中电子传递的生理作用和机制的有用工具。此外,这些数据提供了阿魏醇可能改变细胞功能的另一种机制,并表明线粒体功能障碍是阿魏属植物毒性的重要决定因素。

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