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Retinoid-related orphan receptors (RORs): critical roles in development immunity circadian rhythm and cellular metabolism

机译:类维生素A相关的孤儿受体(ROR):在发育免疫昼夜节律和细胞代谢中的关键作用

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摘要

The last few years have witnessed a rapid increase in our knowledge of the retinoid-related orphan receptors RORα, -β, and -γ (NR1F1-3), their mechanism of action, physiological functions, and their potential role in several pathologies. The characterization of ROR-deficient mice and gene expression profiling in particular have provided great insights into the critical functions of RORs in the regulation of a variety of physiological processes. These studies revealed that RORα plays a critical role in the development of the cerebellum, that both RORα and RORβ are required for the maturation of photoreceptors in the retina, and that RORγ is essential for the development of several secondary lymphoid tissues, including lymph nodes. RORs have been further implicated in the regulation of various metabolic pathways, energy homeostasis, and thymopoiesis. Recent studies identified a critical role for RORγ in lineage specification of uncommitted CD4+ T helper cells into Th17 cells. In addition, RORs regulate the expression of several components of the circadian clock and may play a role in integrating the circadian clock and the rhythmic pattern of expression of downstream (metabolic) genes. Study of ROR target genes has provided insights into the mechanisms by which RORs control these processes. Moreover, several reports have presented evidence for a potential role of RORs in several pathologies, including osteoporosis, several autoimmune diseases, asthma, cancer, and obesity, and raised the possibility that RORs may serve as potential targets for chemotherapeutic intervention. This prospect was strengthened by recent evidence showing that RORs can function as ligand-dependent transcription factors.
机译:最近几年,我们对类维生素A相关的孤儿受体RORα,-β和-γ(NR1F1-3),它​​们的作用机制,生理功能以及它们在几种病理学中的潜在作用的认识迅速增加。 ROR缺陷小鼠的特征以及基因表达谱尤其为ROR在调节各种生理过程中的关键功能提供了深刻的见识。这些研究表明,RORα在小脑的发育中起着至关重要的作用,RORα和RORβ都是视网膜中感光细胞成熟所必需的,并且RORγ对于包括淋巴结在内的几种次级淋巴组织的发育至关重要。 ROR还与各种代谢途径,能量稳态和胸腺生成的调节有关。最近的研究发现,RORγ在未定型的CD4 + T辅助细胞进入Th17细胞的谱系规格中起着关键作用。此外,ROR调节昼夜节律的几个组成部分的表达,并可能在整合昼夜节律和下游(代谢)基因表达的节奏模式中发挥作用。 ROR靶基因的研究提供了对ROR控制这些过程的机制的见解。此外,一些报告提供了ROR在包括骨质疏松症,几种自身免疫性疾病,哮喘,癌症和肥胖症在内的多种病理中潜在作用的证据,并增加了ROR可能作为化学疗法干预的潜在靶标的可能性。最近的证据表明ROR可以作为依赖配体的转录因子起作用,从而加强了这一前景。

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