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首页> 外文期刊>Biochemical Pharmacology >Metabolism of a 20-methyl substituted series of vitamin D analogs by cultured human cells: apparent reduction of 23-hydroxylation of the side chain by the 20-methyl group.
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Metabolism of a 20-methyl substituted series of vitamin D analogs by cultured human cells: apparent reduction of 23-hydroxylation of the side chain by the 20-methyl group.

机译:被培养的人细胞代谢20-甲基取代的一系列维生素D类似物:20-甲基使侧链的23-羟基化明显减少。

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We describe here for the first time the effect of introducing a 20-methyl group on the side-chain metabolism of the vitamin D molecule. Using a series of 20-methyl-derivatives of 1alpha,25-(OH)2D3 incubated with two different cultured human cell lines, HPK1A-ras and HepG2, previously shown to metabolize vitamin D compounds, we obtained a series of metabolic products that were identified by comparison to chemically synthesized standards on HPLC and GC-MS. 24-Hydroxylated-, 24-oxo-hydroxylated-, and 24-oxo-23-hydroxylated products of 20-methyl-1alpha,25-(OH)2D3 were observed, but the efficiency of 23-hydroxylation was low as compared with that of the natural hormone and, in contrast to 1alpha,25-(OH)2D3, no truncated 23-alcohol was formed from the 20-methyl analog. These data, taken together with results from other analogs with changes in the vicinity of the C17-C20 positions, lead us to speculate that such changes must alter the accessibility of the C-23 position to the cytochrome P450 involved. Using the HepG2 cell line, we found evidence that the 24S-hydroxylated product of 20-methyl-1alpha,25-(OH)2D3 predominates, implying that the liver cytochrome involved in metabolism is a different isoform. Studies with a more metabolically resistant analog of the series, 20-methyl-Delta(23)-1alpha,25-(OH)2D3, gave the expected block in 23- and 24-hydroxylation, and evidence of an alternative pathway, namely 26-hydroxylation. 20-Methyl-Delta(23)-1alpha,25-(OH)2D3 was also more potent in biological assays, and the metabolic studies reported here help us to suggest explanations for this increased potency. We conclude that the 20-methyl series of vitamin D analogs offers new perspectives into vitamin D analog action, as well as insights into the substrate preferences of the cytochrome(s) P450 involved in vitamin D catabolism.
机译:我们在这里首次描述了在维生素D分子的侧链代谢中引入20-甲基的影响。使用一系列20α-甲基衍生物1alpha,25-(OH)2D3与两种不同的人类培养细胞系HPK1A-ras和HepG2孵育,先前证明它们可以代谢维生素D化合物,我们获得了一系列代谢产物,通过与HPLC和GC-MS上的化学合成标准品进行比较而鉴定。观察到20-甲基-1α,25-(OH)2D3的24-羟基化,24-羟基-羟基化和24-羟基-23-羟基化产物,但23-羟基化的效率比与1alpha,25-(OH)2D3相反,由20-甲基类似物未形成截短的23-醇。这些数据,加上其他类似物在C17-C20位置附近发生变化的结果,使我们推测这种变化必须改变C-23位置对所涉及的细胞色素P450的可及性。使用HepG2细胞系,我们发现证据表明20-甲基-1α,25-(OH)2D3的24S-羟基化产物占主导地位,这表明参与代谢的肝细胞色素是不同的同种型。使用具有更高代谢抗性的类似物20-甲基-Delta(23)-1alpha,25-(OH)2D3系列进行的研究给出了23-和24-羟基化的预期阻断作用,并提供了另一种途径的证据,即26 -羟基化。 20-甲基-Delta(23)-1alpha,25-(OH)2D3在生物学分析中也更有效,此处报道的代谢研究有助于我们为这种增强的效力提出解释。我们得出的结论是,维生素D类似物的20甲基系列为维生素D类似物的作用提供了新的观点,并深入了解了参与维生素D分解代谢的细胞色素P450的底物偏好。

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