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木糖甾醇对3-羟基-3-甲基戊二酰辅酶A还原酶活性及胆固醇生物合成的调节

Regulation of 3-hydroxy-3-methylglutaryl coenzyme A reductase activity and cholesterol biosynthesis by oxylanosterols.

作者信息

Panini S R, Sexton R C, Gupta A K, Parish E J, Chitrakorn S, Rudney H

出版信息

J Lipid Res. 1986 Nov;27(11):1190-204.

PMID:3559385
Abstract

Treatment of rat intestinal epithelial cell cultures with the oxidosqualene cyclase inhibitor, 3 beta-[2-(diethylamino)-ethoxy]androst-5-en-17-one (U18666A), resulted in an accumulation of squalene 2,3:22,23-dioxide (SDO). When U18666A was withdrawn and the cells were treated with the sterol 14 alpha-demethylase inhibitor, ketoconazole, SDO was metabolized to a product identified as 24(S),25-epoxylanosterol. To test the biological effects and cellular metabolism of this compound, we prepared 24(RS),25-epoxylanosterol by chemical synthesis. The epimeric mixture of 24,25-epoxylanosterols could be resolved by high performance liquid chromatography on a wide-pore, non-endcapped, reverse phase column. Both epimers were effective suppressors of 3-hydroxy-3-methylglutaryl coenzyme A (HMG-CoA) reductase activity of IEC-6 cells. The suppressive action of the natural epimer, 24(S),25-epoxylanosterol, but not that of 24(R),25-epoxylanosterol could be completely prevented by ketoconazole. IEC-6 cells could efficiently metabolize biosynthetic 24(S),25-epoxy[3H]anosterol mainly to the known reductase-suppressor 24(S),25-epoxycholesterol. This metabolism was substantially reduced by ketoconazole. These data support the conclusion that 24(S),25-epoxylanosterol per se is not a suppressor of HMG-CoA reductase activity but is a precursor to a regulatory oxysterol(s). It has recently been reported that 25-hydroxycholesterol can occur naturally in cultured cells in amounts sufficient to effect regulation of HMG-CoA reductase (Saucier et al. 1985. J. Biol. Chem. 260: 14571-14579). In order to investigate the biological effects of possible precursors of 25-hydroxycholesterol, we chemically synthesized 25-hydroxylanosterol and 25-hydroxylanostene-3-one. Both oxylanosterol derivatives suppressed cellular sterol synthesis at the level of HMG-CoA reductase. U18666A had the unusual effect of potentiating the inhibitory effect of 25-hydroxylanostene-3-one but did not influence the effect of other oxylanosterols. All the oxylanosterols, with the exception of 25-hydroxylanostene-3-one, enhanced intracellular esterification of cholesterol. The foregoing observations support consideration of oxylanosterols as playing an important role in the biological formation of regulatory oxysterols that modulate sterol biosynthesis at the level of HMG-CoA reductase.

摘要

用氧化角鲨烯环化酶抑制剂3β-[2-(二乙氨基)-乙氧基]雄甾-5-烯-17-酮(U18666A)处理大鼠肠上皮细胞培养物,导致2,3:22,23-二氧化角鲨烯(SDO)积累。当撤去U18666A并用甾醇14α-脱甲基酶抑制剂酮康唑处理细胞时,SDO被代谢为一种鉴定为24(S),25-环氧羊毛甾醇的产物。为了测试该化合物的生物学效应和细胞代谢,我们通过化学合成制备了24(RS),25-环氧羊毛甾醇。24,25-环氧羊毛甾醇的差向异构体混合物可通过在宽孔、非封端反相柱上的高效液相色谱法分离。两种差向异构体都是IEC-6细胞3-羟基-3-甲基戊二酰辅酶A(HMG-CoA)还原酶活性的有效抑制剂。酮康唑可完全阻止天然差向异构体24(S),25-环氧羊毛甾醇的抑制作用,但不能阻止24(R),25-环氧羊毛甾醇的抑制作用。IEC-6细胞可有效地将生物合成的24(S),25-环氧[3H]羊毛甾醇主要代谢为已知的还原酶抑制剂24(S),25-环氧胆固醇。酮康唑可大大减少这种代谢。这些数据支持以下结论:24(S),25-环氧羊毛甾醇本身不是HMG-CoA还原酶活性的抑制剂,而是一种调节性氧化甾醇的前体。最近有报道称,25-羟基胆固醇可以在培养细胞中以足以影响HMG-CoA还原酶调节的量自然存在(Saucier等人,1985年。《生物化学杂志》260:14571-14579)。为了研究25-羟基胆固醇可能的前体的生物学效应,我们化学合成了25-羟基羊毛甾醇和25-羟基羊毛甾烯-3-酮。两种氧化羊毛甾醇衍生物都在HMG-CoA还原酶水平上抑制细胞甾醇合成。U18666A具有增强25-羟基羊毛甾烯-3-酮抑制作用的异常效应,但不影响其他氧化羊毛甾醇的作用。除25-羟基羊毛甾烯-3-酮外,所有氧化羊毛甾醇都增强了细胞内胆固醇的酯化作用。上述观察结果支持将氧化羊毛甾醇视为在调节性氧化甾醇的生物形成中起重要作用,这些调节性氧化甾醇在HMG-CoA还原酶水平上调节甾醇生物合成。

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