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氧甾醇24(S),25-环氧胆固醇的合成与胆固醇生成平行,且可能防止新合成胆固醇在细胞内蓄积。

Synthesis of the oxysterol, 24(S), 25-epoxycholesterol, parallels cholesterol production and may protect against cellular accumulation of newly-synthesized cholesterol.

作者信息

Wong Jenny, Quinn Carmel M, Brown Andrew J

机构信息

School of Biotechnology and Biomolecular Sciences, The University of New South Wales, Sydney, Australia.

出版信息

Lipids Health Dis. 2007 Apr 5;6:10. doi: 10.1186/1476-511X-6-10.

Abstract

AIM

The effects of 24(S),25-epoxycholesterol (24,25EC) on aspects of cholesterol homeostasis is well-documented. When added to cells, 24,25EC decreases cholesterol synthesis and up-regulates cholesterol efflux genes, including ABCA1. Synthesis of 24,25EC occurs in a shunt of the mevalonate pathway which also produces cholesterol. Therefore, 24,25EC synthesis should be subject to the same negative feedback regulation as cholesterol synthesis. To date, no role has been ascribed to 24,25EC in light of the fact that increased accumulation of cholesterol should decrease formation of this oxysterol through feedback inhibition. This leads to the intriguing paradox: why inhibit production of an apparently important regulator of cholesterol homeostasis when it is needed most?

METHODS

We used a combination of pharmacological and genetic approaches in Chinese Hamster Ovary cell-lines to investigate this paradox. Endogenous synthesis of 24,25EC was manipulated using partial inhibition of the enzyme, Oxidosqualene Cyclase. Changes in cholesterol and 24,25EC synthesis were determined using metabolic labelling with [1-14C]-acetate, thin-layer chromatography and phosphorimaging. Transcriptional effects mediated via SREBP and LXR were analysed by luciferase reporter assays.

RESULTS

We showed that cholesterol addition to cells lead to a rapid and preferential inhibition of 24,25EC synthesis. Addition of 24,25EC resulted in parallel inhibition of 24,25EC and cholesterol synthesis. Furthermore, we used a variety of approaches to examine the relationship between cholesterol and 24,25EC synthesis, including cell-lines with different rates of cholesterol synthesis, varying cholesterol synthetic rates by pre-treatment with a statin, or lipoprotein cholesterol loading of macrophages. In all cases, we showed that 24,25EC synthesis faithfully tracked cholesterol synthesis. Moreover, changes in 24,25EC synthesis exerted downstream effects, reducing SREBP transcriptional activity whilst increasing ABCA1 and LXR transcriptional activity.

CONCLUSION

Our results show that 24,25EC synthesis parallels cholesterol synthesis, consistent with this oxysterol functioning as a safety valve to protect against the accumulation of newly-synthesised cholesterol (as opposed to exogenously-derived cholesterol). Considering that 24,25EC is capable of being produced in all cholesterogenic cells, we propose that production of 24,25EC may represent a ubiquitous defence mechanism.

摘要

目的

24(S),25-环氧胆固醇(24,25EC)对胆固醇稳态各方面的影响已有充分记录。当添加到细胞中时,24,25EC可降低胆固醇合成并上调胆固醇流出基因,包括ABCA1。24,25EC的合成发生在甲羟戊酸途径的一个分支中,该途径也产生胆固醇。因此,24,25EC的合成应与胆固醇合成受到相同的负反馈调节。迄今为止,鉴于胆固醇积累增加应通过反馈抑制减少这种氧化甾醇的形成,尚未赋予24,25EC任何作用。这就导致了一个有趣的悖论:为什么在最需要的时候抑制一种显然重要的胆固醇稳态调节因子的产生?

方法

我们在中国仓鼠卵巢细胞系中结合使用药理学和遗传学方法来研究这个悖论。通过部分抑制氧化角鲨烯环化酶来操纵24,25EC的内源性合成。使用[1-14C]-乙酸盐代谢标记、薄层色谱和磷光成像来测定胆固醇和24,25EC合成的变化。通过荧光素酶报告基因测定分析经由SREBP和LXR介导的转录效应。

结果

我们表明向细胞中添加胆固醇会导致对24,25EC合成的快速且优先的抑制。添加24,25EC会导致对24,25EC和胆固醇合成的平行抑制。此外,我们使用了多种方法来研究胆固醇与24,25EC合成之间的关系,包括具有不同胆固醇合成速率的细胞系、通过用他汀类药物预处理改变胆固醇合成速率或巨噬细胞的脂蛋白胆固醇加载。在所有情况下,我们都表明24,25EC合成忠实地跟踪胆固醇合成。此外,24,25EC合成的变化产生下游效应,降低SREBP转录活性,同时增加ABCA1和LXR转录活性。

结论

我们的结果表明24,25EC合成与胆固醇合成平行,这与这种氧化甾醇作为防止新合成胆固醇(与外源性胆固醇相对)积累的安全阀的功能一致。考虑到24,25EC能够在所有产胆固醇细胞中产生,我们提出24,25EC的产生可能代表一种普遍存在的防御机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a30/1854894/796463357f81/1476-511X-6-10-1.jpg

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