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首页> 外文期刊>Molecular pharmacology. >Identification of oxysterol 7alpha-hydroxylase (Cyp7b1) as a novel retinoid-related orphan receptor alpha (RORalpha) (NR1F1) target gene and a functional cross-talk between RORalpha and liver X receptor (NR1H3).
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Identification of oxysterol 7alpha-hydroxylase (Cyp7b1) as a novel retinoid-related orphan receptor alpha (RORalpha) (NR1F1) target gene and a functional cross-talk between RORalpha and liver X receptor (NR1H3).

机译:氧固醇7α-羟化酶(Cyp7b1)的鉴定为新型类视黄醇相关的孤儿受体α(RORalpha)(NR1F1)靶标基因,以及RORalpha与肝X受体(NR1H3)之间的功能性串扰。

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The retinoid-related orphan receptors (RORs) and liver X receptors (LXRs) were postulated to have distinct functions. RORs play a role in tissue development and circadian rhythm, whereas LXRs are sterol sensors that affect lipid homeostasis. In this study, we revealed a novel function of RORalpha (NR1F1) in regulating the oxysterol 7alpha-hydroxylase (Cyp7b1), an enzyme critical for the homeostasis of cholesterol, bile acids, and oxysterols. The expression of Cyp7b1 gene was suppressed in the RORalpha null (RORalpha(sg/sg)) mice, suggesting RORalpha as a positive regulator of Cyp7b1. Promoter analysis established Cyp7b1 as a transcriptional target of RORalpha, and transfection of RORalpha induced the expression of endogenous Cyp7b1 in the liver. Interestingly, Cyp7b1 regulation seemed to be RORalpha-specific, because RORgamma had little effect. Reporter gene analysis showed that the activation of Cyp7b1 gene promoter by RORalpha was suppressed by LXRalpha (NR1H3), whereas RORalpha inhibited both the constitutive and ligand-dependent activities of LXRalpha. The mutual suppression between RORalpha and LXR was supported by the in vivo observation that loss of RORalpha increased the expression of selected LXR target genes, leading to hepatic triglyceride accumulation. Likewise, mice deficient of LXR alpha and beta isoforms showed activation of selected RORalpha target genes. Our results have revealed a novel role for RORalpha and a functional interplay between RORalpha and LXR in regulating endo- and xenobiotic genes, which may have broad implications in metabolic homeostasis.
机译:假定类维生素A相关的孤儿受体(ROR)和肝X受体(LXR)具有独特的功能。 ROR在组织发育和昼夜节律中起作用,而LXR是影响脂质体内稳态的固醇传感器。在这项研究中,我们揭示了RORalpha(NR1F1)在调节氧固醇7α-羟化酶(Cyp7b1)中的新功能,该酶对胆固醇,胆汁酸和氧固醇的体内稳态至关重要。 Cyp7b1基因的表达在RORalpha null(RORalpha(sg / sg))小鼠中被抑制,表明RORalpha作为Cyp7b1的正向调节剂。启动子分析确定Cyp7b1为RORalpha的转录靶标,RORalpha的转染诱导了肝脏中内源性Cyp7b1的表达。有趣的是,Cyp7b1调控似乎是RORalpha特异性的,因为RORgamma的作用很小。记者基因分析表明,RORalpha激活Cyp7b1基因启动子被LXRalpha(NR1H3)抑制,而RORalpha抑制LXRalpha的组成型和配体依赖性活性。体内观察结果支持RORalpha与LXR之间的相互抑制,即RORalpha的缺失会增加所选LXR靶基因的表达,从而导致肝甘油三酸酯的积累。同样,缺乏LXRα和β亚型的小鼠表现出所选RORalpha靶基因的激活。我们的研究结果揭示了RORalpha的新作用以及RORalpha和LXR在调节内源性和异源性基因中的功能相互作用,这可能对代谢稳态具有广泛的影响。

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