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11β-Hydroxysteroid dehydrogenase type 1 contributes to the regulation of 7-oxysterol levels in the arterial wall through the inter-conversion of 7-ketocholesterol and 7β-hydroxycholesterol

机译:1β-羟基类固醇脱氢酶1型通过7-酮胆固醇和7β-羟基胆固醇的相互转化有助于调节动脉壁中7-羟基固醇的水平

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摘要

The atherogenic 7-oxysterols, 7-ketocholesterol (7-KC) and 7β-hydroxycholesterol (7βOHC), can directly impair arterial function. Inter-conversion of 7-KC and 7βOHC has recently been shown as a novel role for the glucocorticoid-metabolizing enzyme 11β-hydroxysteroid dehydrogenase type 1 (11β-HSD1). Since this enzyme is expressed in vascular smooth muscle cells, we addressed the hypothesis that inter-conversion of 7-KC and 7βOHC by 11β-HSD1 may contribute to regulation of arterial function.Incubation (4–24 h) of aortic rings with either 7-KC (25 μM) or 7βOHC (20 μM) had no effect on endothelium-dependent (acetylcholine) or -independent (sodium nitroprusside) relaxation. In contrast, exposure to 7-KC (but not to 7βOHC) attenuated noradrenaline-induced contraction (Emax) after 4 h (0.78 ± 0.28 vs 0.40 ± 0.08 mN/mm; p < 0.05) and 24 h (2.28 ± 0.34 vs 1.56 ± 0.48 mN/mm; p < 0.05). Both 7-oxysterols were detected by GCMS in the aortic wall of chow-fed C57Bl6/J mice, with concentrations of 7-KC (1.41 ± 0.81 ng/mg) higher (p = 0.05) than 7βOHC (0.16 ± 0.06 ng/mg). In isolated mouse aortic rings 11β-HSD1 was shown to act as an oxo-reductase, inter-converting 7-KC and 7βOHC. This activity was lost in aorta from 11β-HSD1−/− mice, which had low oxysterol levels. Renal homogenates from 11β-HSD1−/− mice were used to confirm that the type 2 isozyme of 11β-HSD does not inter-convert 7-KC and 7βOHC.These results demonstrate that 7-KC has greater effects than 7βOHC on vascular function, and that 11β-HSD1 can inter-convert 7-KC and 7βOHC in the arterial wall, contributing to the regulation of 7-oxysterol levels and potentially influencing vascular function. This mechanism may be important in the cardioprotective effects of 11β-HSD1 inhibitors.
机译:致动脉粥样硬化的7-氧固醇,7-酮胆固醇(7-KC)和7β-羟基胆固醇(7βOHC)可直接损害动脉功能。最近已证明7-KC和7βOHC的相互转化是1型糖皮质激素代谢酶11β-羟基类固醇脱氢酶(11β-HSD1)的新作用。由于该酶在血管平滑肌细胞中表达,因此我们提出了以下假说:11β-HSD1相互转化7-KC和7βOHC可能有助于调节动脉功能.7个主动脉环孵育(4-24小时) -KC(25μM)或7βOHC(20μM)对内皮依赖性(乙酰胆碱)或-非依赖性(硝普钠)舒张没有影响。相比之下,暴露于7-KC(但不暴露于7βOHC)则在4 h(0.78±0.28 vs 0.40±0.08 mN / mm; p <0.05)和24 h(2.28±0.34 vs 1.56)后减弱去甲肾上腺素诱导的收缩(Emax)。 ±0.48 mN / mm; p <0.05)。通过GCMS在喂养C57Bl6 / J的小鼠的主动脉壁中检测到这两种7-羟基固醇,其浓度比7βOHC(0.16±0.06 ng / mg)高7-KC(1.41±0.81ng / mg)(p = 0.05) )。在分离的小鼠主动脉环中,11β-HSD1被显示为一种氧化还原酶,可相互转化7-KC和7βOHC。氧固醇水平低的11β-HSD1-/-小鼠的主动脉中该活性丧失。来自11β-HSD1-// 小鼠的肾脏匀浆被用于确认11β-HSD的2型同工酶不会相互转化7-KC和7βOHC,这些结果表明7-KC具有更高的比7βOHC对血管功能的影响更大,并且11β-HSD1可以在动脉壁中相互转换7-KC和7βOHC,从而有助于调节7-氧固醇水平并潜在地影响血管功能。该机制在11β-HSD1抑制剂的心脏保护作用中可能很重要。

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