首页> 外文期刊>The Journal of Steroid Biochemistry and Molecular Biology >Enzymatic interconversion of the oxysterols 7 beta,25-dihydroxycholesterol and 7-keto,25-hydroxycholesterol by 11 beta-hydroxysteroid dehydrogenase type 1 and 2
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Enzymatic interconversion of the oxysterols 7 beta,25-dihydroxycholesterol and 7-keto,25-hydroxycholesterol by 11 beta-hydroxysteroid dehydrogenase type 1 and 2

机译:苏克酸7β,25-二羟基胆固醇和7-酮,25-羟基胆固醇的酶促互连通过11β-羟类脱氢酶1和2

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摘要

Oxysterols are cholesterol metabolites derived through either autoxidation or enzymatic processes. They consist of a large family of bioactive lipids that have been associated with the progression of multiple pathologies. In order to unravel (patho-)physiological mechanisms involving oxysterols, it is crucial to elucidate the underlying formation and degradation of oxysterols. A role of 11 beta-hydroxysteroid dehydrogenases (11 beta-HSDs) in oxysterol metabolism by catalyzing the interconversion of 7-ketocholesterol (7kC) and 7 beta-hydroxycholesterol (7 beta OHC) has already been reported. The present study addresses a function of 11 beta-HSD1 in the enzymatic generation of 7 beta,25-dihydroxycholesterol (7 beta 25OHC) from 7-keto,25-hydroxycholesterol (7k25OHC) and tested whether 11 beta-HSD2 is able to catalyze the reverse reaction. For the first time, using recombinant enzymes, the formation of 7k25OHC from 7kC by cholesterol 25-hydroxylase (CH25H) and further stereospecific oxoreduction to 7 beta 25OHC by human and mouse 11 beta-HSD1 could be demonstrated. Additionally, experiments using human 11 beta-HSD2 showed the oxidation of 7 beta 25OHC to 7k25OHC. Molecular modeling provided an explanation for the stereospecific interconversion of 7 beta 25OHC and 7k25OHC. Production of the Epstein-Barr virus-induced gene 2 (EBI2) ligand 7 beta 25OHC from 7k25OHC in challenged tissue by 11 beta-HSD1 may be important in inflammation. In conclusion, these results demonstrate a novel glucocorticoid-independent pre-receptor regulation mediated by 11 beta-HSDs.
机译:苏西醇是通过自动氧化或酶法衍生的胆固醇代谢物。它们由大量的生物活性脂质组成,该生物活性脂质与多种病理的进展相关。为了解开涉及氧气的地生理机制,至关重要,阐明氧气的潜在形成和降解。已经报道了11β-羟基甾醇脱氢酶(11β-HSD)在苏西醇代谢中的作用已经报道已经报道了通过催化7-酮化合物(7KC)和7β-羟基胆固醇(7βOHC)的互联,氧代代谢。本研究通过7-酮,25-羟基胆固醇(7K25OHC)的酶促产生的7β,25-二羟基胆固醇(7β25OHC)的酶促产生11β-HSD1的功能地址为11β-HSD1的函数。测试11β-HSD2是否能够催化逆反应。首次使用重组酶,通过胆固醇25-羟化酶(CH25H)的7KCC形成7K22OHC,并通过人和小鼠11β-HSD1进一步立体氧化氧化至7β25OHC。另外,使用人11β-HSD2的实验显示7β25OHC至7K25OHC的氧化。分子建模提供了7β25OHC和7K25OHC的立体间互联的解释。通过11β-HSD1在攻击组织中,从7K25OHC产生的Epstein-BARR病毒诱导的基因2(EBI2)配体7βBETA25OHC在炎症中可能是重要的。总之,这些结果证明了由11个β-HSD介导的新型糖皮质激素无关的预受体调节。

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