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他汀类药物在大鼠模型中的抗癌作用与泛醌的水平和合成相关。

The anti-carcinogenic effect of statins in a rat model correlates with levels and synthesis of ubiquinone.

机构信息

Division of Clinical Chemistry, Department of Laboratory Medicine, Karolinska Institutet, Karolinska University Hospital Huddinge, SE-141 86 Stockholm, Sweden.

出版信息

Biochem Biophys Res Commun. 2012 Aug 24;425(2):348-52. doi: 10.1016/j.bbrc.2012.07.094. Epub 2012 Jul 26.

Abstract

Ubiquinone (Q) is a product in the cholesterol synthesis pathway and is an essential component of the respiratory chain in the mitochondrial membrane. In addition, extra-mitochondrial Q has anti-oxidative properties and this fraction is increased during carcinogenesis. The aim of the present study was to investigate if extra-mitochondrial level of Q is affected by statin treatment in a rat model for liver cancer, and if this change correlates with inhibited carcinogenesis. To do this we isolated sub-cellular fractions of rat livers from a previous experiment where we have shown anti-carcinogenic effects of statins. The levels of Q(8), Q(9) and Q(10) were analysed with liquid chromatography-mass spectrometry. The Q(9)-levels, constituting the major part of Q in rats, were not significantly affected in any of the sub-cellular compartments. The levels of Q(10), constituting a minor part of Q in rats but the major part of Q in humans, were significantly decreased by about 60% in the statin treated rats. The decrease was present in all sub-cellular compartments, but was most pronounced in the cytosol. There was a significant correlation between extra-mitochondrial Q(10) levels and inhibited carcinogenesis. No such correlation was observed with extra-mitochondrial Q(9). The reduced Q(10)-levels might be explained by the reduced availability of isoprene units during statin treatment, shifting the synthesis towards isoforms with shorter side-chains. In line with this hypothesis there were increased levels of Q(8)-levels during statin treatment. The results support our previous suggestion that at least part of the anti-carcinogenic effect of statins in our rat model is mediated by effects on synthesis of Q. We also demonstrate a shift in the Q-synthesis pathway towards isoforms with shorter side-chains during statin treatment. The ratio between the different Q-isoforms might be used as a more sensitive marker of statin-induced inhibition of Q than measuring total Q levels.

摘要

泛醌(Q)是胆固醇合成途径的产物,也是线粒体膜呼吸链的必需组成部分。此外,细胞外 Q 具有抗氧化特性,并且这种部分在癌变过程中增加。本研究的目的是研究他汀类药物在肝癌大鼠模型中是否会影响细胞外 Q 的水平,以及这种变化是否与抑制癌变有关。为此,我们从之前的实验中分离大鼠肝脏的亚细胞成分,该实验表明他汀类药物具有抗癌作用。使用液相色谱-质谱法分析 Q(8)、Q(9)和 Q(10)的水平。构成大鼠 Q 主要部分的 Q(9)水平在任何亚细胞隔室中均无明显变化。构成大鼠 Q 主要部分但人类 Q 主要部分的 Q(10)水平在他汀类药物处理的大鼠中显著降低约 60%。这种减少存在于所有亚细胞隔室中,但在细胞质中最为明显。细胞外 Q(10)水平与抑制癌变之间存在显著相关性。与细胞外 Q(9) 没有观察到这种相关性。Q(10)水平降低可能是由于他汀类药物治疗期间异戊二烯单位的可用性降低,导致合成向具有较短侧链的同工型转移。与该假说一致,他汀类药物治疗期间 Q(8)水平升高。这些结果支持我们之前的假设,即在我们的大鼠模型中,他汀类药物的至少部分抗癌作用是通过对 Q 合成的影响介导的。我们还证明在他汀类药物治疗期间,Q 合成途径向具有较短侧链的同工型转移。不同 Q 同工型之间的比例可能比测量总 Q 水平更敏感地作为他汀类药物诱导的 Q 抑制的标志物。

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