Zerenturk Eser J, Kristiana Ika, Gill Saloni, Brown Andrew J
School of Biotechnology and Biomolecular Sciences, University of New South Wales, Sydney, Australia.
Biochim Biophys Acta. 2012 Sep;1821(9):1269-77. doi: 10.1016/j.bbalip.2011.11.009. Epub 2011 Dec 10.
The oxysterol 24(S),25-epoxycholesterol (24,25EC) can affect cholesterol metabolism at multiple points. Previously, we proposed that 24,25EC has an especially significant role in fine-tuning cholesterol synthesis, since it parallels cholesterol production, and without it, acute cholesterol synthesis is exaggerated. 24,25EC is structurally similar to desmosterol, a substrate for the enzyme 3β-hydroxysterol ∆(24)-reductase (DHCR24, also called Seladin-1) which catalyzes a final step in cholesterol synthesis. In this study, we reveal a novel mode by which 24,25EC can regulate cholesterol synthesis, by interfering with DHCR24, resulting in the rapid accumulation of the substrate desmosterol, at the expense of cholesterol. This effect was independent of DHCR24 protein levels, and was observed in multiple mammalian cell-lines, including those of hepatic and neuronal origin. Conversely, overexpression of DHCR24 blunted the inhibition by 24,25EC. We also determined that the specificity of this effect was restricted to certain side-chain oxysterols, notably those oxygenated at C-25. Importantly, endogenous levels of 24,25EC, manipulated by genetic and pharmacological methods, were sufficient to reduce DHCR24 activity. Together, our work introduces a novel role for 24,25EC in cholesterol homeostasis, through its rapid inhibition of cholesterol synthesis at DHCR24. Also, our work provides new insights into a little studied area, the post-transcriptional regulation of DHCR24, an important enzyme in human health and disease.
氧化甾醇24(S),25-环氧胆固醇(24,25EC)可在多个环节影响胆固醇代谢。此前,我们提出24,25EC在精细调节胆固醇合成中具有特别重要的作用,因为它与胆固醇生成平行,且没有它时,急性胆固醇合成会过度增强。24,25EC在结构上与羊毛甾醇相似,羊毛甾醇是3β-羟基甾醇Δ(24)-还原酶(DHCR24,也称为Seladin-1)的底物,该酶催化胆固醇合成的最后一步。在本研究中,我们揭示了24,25EC调节胆固醇合成的一种新方式,即通过干扰DHCR24,导致底物羊毛甾醇快速积累,而胆固醇减少。这种效应与DHCR24蛋白水平无关,在多种哺乳动物细胞系中均有观察到,包括肝源性和神经源性细胞系。相反,DHCR24的过表达减弱了24,25EC的抑制作用。我们还确定这种效应的特异性仅限于某些侧链氧化甾醇,特别是那些在C-25位被氧化的氧化甾醇。重要的是,通过基因和药理学方法调控的内源性24,25EC水平足以降低DHCR24的活性。总之,我们的工作揭示了24,25EC在胆固醇稳态中的新作用,即通过快速抑制DHCR24来抑制胆固醇合成。此外,我们的工作为一个研究较少的领域——DHCR24的转录后调控,提供了新的见解,DHCR24是人类健康和疾病中的一种重要酶。