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首页> 外文期刊>Biochimica et Biophysica Acta. Molecular and cell biology of Lipids >A second class of nuclear receptors for oxysterols: Regulation of RORalpha and RORgamma activity by 24S-hydroxycholesterol (cerebrosterol).
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A second class of nuclear receptors for oxysterols: Regulation of RORalpha and RORgamma activity by 24S-hydroxycholesterol (cerebrosterol).

机译:氧固醇的第二类核受体:24S-羟基胆固醇(脑甾醇)对RORalpha和RORgamma活性的调节。

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The retinoic acid receptor-related orphan receptors alpha and gamma (RORalpha [NR1F1] and RORgamma [NR1F3]) are members of the nuclear hormone receptor superfamily. These 2 receptors regulate many physiological processes including development, metabolism and immunity. We recently found that certain oxysterols, namely the 7-substituted oxysterols, bound to the ligand binding domains (LBDs) of RORalpha and RORgamma with high affinity, altered the LBD conformation and reduced coactivator binding resulting in suppression of the constitutive transcriptional activity of these two receptors. Here, we show that another oxysterol, 24S-hydroxycholesterol (24S-OHC), is also a high affinity ligand for RORalpha and RORgamma (K(i) approximately 25nM). 24S-OHC is also known as cerebrosterol due to its high level in the brain where it plays an essential role as an intermediate in cholesterol elimination from the CNS. 24S-OHC functions as a RORalpha/gamma inverse agonist suppressing the constitutive transcriptional activity of these receptors in cotransfection assays. Additionally, 24S-OHC suppressed the expression of several RORalpha target genes including BMAL1 and REV-ERBalpha in a ROR-dependent manner. We also demonstrate that 24S-OHC decreases the ability of RORalpha to recruit the coactivator SRC-2 when bound to the BMAL1 promoter. We also noted that 24(S), 25-epoxycholesterol selectively suppressed the activity of RORgamma. These data indicate that RORalpha and RORgamma may serve as sensors of oxsterols. Thus, RORalpha and RORgamma display an overlapping ligand preference with another class of oxysterol nuclear receptors, the liver X receptors (LXRalpha [NR1H3] and LXRbeta [NR1H2]).
机译:视黄酸受体相关的孤儿受体α和γ(RORalpha [NR1F1]和RORgamma [NR1F3])是核激素受体超家族的成员。这两个受体调节许多生理过程,包括发育,代谢和免疫。我们最近发现,某些氧固醇,即7-取代的氧固醇,以高亲和力与RORalpha和RORgamma的配体结合域(LBD)结合,改变了LBD构象并降低了共激活剂结合,从而抑制了这两个的组成性转录活性受体。在这里,我们显示另一种氧固醇24S-羟基胆固醇(24S-OHC)也是RORalpha和RORgamma的高亲和力配体(K(i)约25nM)。 24S-OHC也因其在大脑中的高水平而被称为脑甾醇,在脑中它作为从CNS清除胆固醇的中间体起着至关重要的作用。 24S-OHC作为RORalpha /γ反向激动剂,可在共转染试验中抑制这些受体的组成型转录活性。此外,24S-OHC以依赖ROR的方式抑制了包括BMAL1和REV-ERBalpha在内的几个RORalpha靶基因的表达。我们还证明了24S-OHC与BMAL1启动子结合时会降低RORalpha募集共激活剂SRC-2的能力。我们还注意到24(S),25-环氧胆固醇选择性抑制RORgamma的活性。这些数据表明RORalpha和RORgamma可以用作氧固醇的传感器。因此,RORalpha和RORgamma与另一类氧固醇核受体(肝脏X受体)(LXRalpha [NR1H3]和LXRbeta [NR1H2])表现出重叠的配体偏好。

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