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25-Hydroxycholesterol activates the expression of cholesterol 25-hydroxylase in an LXR-dependent mechanism

机译:25-羟基胆固醇以LXR依赖性机制激活胆固醇25-羟化酶的表达

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Cholesterol 25-hydroxylase (CH25H) catalyzes the production of 25-hydroxycholesterol (25-HC), an oxysterol that can play an important role in different biological processes. However, the mechanisms regulating CH25H expression have not been fully elucidated. In this study, we determined that CH25H is highly expressed in mouse liver and peritoneal macrophages. We identified several liver X receptor (LXR) response elements (LXREs) in the human CH25H promoter. In HepG2 cells, activation of LXR by 25-HC or other oxysterols and synthetic ligands [T0901317 (T317) and GW3965] induced CH25H protein expression, which was associated with increased CH25H mRNA expression. 25-HC or T317 activated CH25H transcription in an LXRE-dependent manner. Thus, high-expressing LXR or LXR{beta} activated CH25H expression, and the activation was further enhanced by LXR ligands. In contrast, inhibition of LXR/{beta} expression attenuated 25-HC or T317-induced CH25H expression. Deficiency of interferon {gamma} expression reduced, but did not block, LXR ligand-induced hepatic CH25H expression. Activation of LXR also substantially induced macrophage CH25H expression. In vivo, administration of GW3965 to mice increased CH25H expression in both liver and peritoneal macrophages. Taken together, our study demonstrates that 25-HC can activate CH25H expression in an LXR-dependent manner, which may be an important mechanism to exert the biological actions of 25-HC.
机译:胆固醇25-羟化酶(CH25H)催化25-羟基胆固醇(25-HC)的产生,这是一种在不同的生物过程中起重要作用的氧固醇。但是,尚未完全阐明调节CH25H表达的机制。在这项研究中,我们确定CH25H在小鼠肝脏和腹膜巨噬细胞中高表达。我们确定了人类CH25H启动子中的几个肝X受体(LXR)反应元件(LXREs)。在HepG2细胞中,由25-HC或其他氧固醇和合成配体[T0901317(T317)和GW3965]激活LXR诱导CH25H蛋白表达,这与CH25H mRNA表达增加有关。 25-HC或T317以LXRE依赖性方式激活CH25H转录。因此,高表达的LXR或LXRβ激活了CH25H表达,并且通过LXR配体进一步增强了激活。相反,抑制LXR /β表达会减弱25-HC或T317诱导的CH25H表达。干扰素γ表达的缺陷减少,但没有阻止LXR配体诱导的肝CH25H表达。 LXR的激活也实质上诱导了巨噬细胞CH25H表达。在体内,向小鼠施用GW3965可增加肝脏和腹膜巨噬细胞中CH25H的表达。综上所述,我们的研究表明25-HC可以LXR依赖的方式激活CH25H表达,这可能是发挥25-HC生物学作用的重要机制。

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