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Roles of the Glucocorticoid and Mineralocorticoid Receptors in Skin Pathophysiology

机译:糖皮质激素和盐皮质激素受体在皮肤病理生理中的作用

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摘要

The nuclear hormone receptor (NR) superfamily comprises approximately 50 evolutionarily conserved proteins that play major roles in gene regulation by prototypically acting as ligand-dependent transcription factors. Besides their central role in physiology, NRs have been largely used as therapeutic drug targets in many chronic inflammatory conditions and derivatives of their specific ligands, alone or in combination, are frequently prescribed for the treatment of skin diseases. In particular, glucocorticoids (GCs) are the most commonly used compounds for treating prevalent skin diseases such as psoriasis due to their anti-proliferative and anti-inflammatory actions. However, and despite their therapeutic efficacy, the long-term use of GCs is limited because of the cutaneous adverse effects including atrophy, delayed wound healing, and increased susceptibility to stress and infections. The GC receptor (GR/NR3C1) and the mineralocorticoid receptor (MR/NR3C2) are members of the NR subclass NR3C that are highly related, both structurally and functionally. While the GR is ubiquitously expressed and is almost exclusively activated by GCs; an MR has a more restricted tissue expression pattern and can bind GCs and the mineralocorticoid aldosterone with similar high affinity. As these receptors share 95% identity in their DNA binding domains; both can recognize the same hormone response elements; theoretically resulting in transcriptional regulation of the same target genes. However, a major mechanism for specific activation of GRs and/or MRs is at the pre-receptor level by modulating the local availability of active GCs. Furthermore, the selective interactions of each receptor with spatio-temporally regulated transcription factors and co-regulators are crucial for the final transcriptional outcome. While there are abundant genome wide studies identifying GR transcriptional targets in a variety of tissue and cell types; including keratinocytes; the data for MR is more limited thus far. Our group and others have studied the role of GRs and MRs in skin development and disease by generating and characterizing mouse and cellular models with gain- and loss-of-function for each receptor. Both NRs are required for skin barrier competence during mouse development and also play a role in adult skin homeostasis. Moreover, the combined loss of epidermal GRs and MRs caused a more severe skin phenotype relative to single knock-outs (KOs) in developing skin and in acute inflammation and psoriasis, indicating that these corticosteroid receptors play cooperative roles. Understanding GR- and MR-mediated signaling in skin should contribute to deciphering their tissue-specific relative roles and ultimately help to improve GC-based therapies.
机译:核激素受体(NR)超家族包含大约50个进化保守的蛋白质,它们通过典型地充当配体依赖性转录因子而在基因调控中起主要作用。除了其在生理学中的核心作用外,NRs在许多慢性炎性疾病中还被广泛用作治疗药物的靶标,其特定配体的衍生物(单独或组合使用)经常被开处方用于治疗皮肤病。特别地,由于其抗增殖和抗炎作用,糖皮质激素(GCs)是用于治疗流行性皮肤病如牛皮癣的最常用化合物。然而,尽管具有治疗效果,但由于皮肤不良反应(包括萎缩,伤口愈合延迟以及对压力和感染的敏感性增加),GC的长期使用受到限制。 GC受体(GR / NR3C1)和盐皮质激素受体(MR / NR3C2)是在结构和功能上高度相关的NR NR3C NR亚类的成员。 GR无处不在,并且几乎完全由GC激活。 MR具有更受限制的组织表达模式,并且可以类似的高亲和力结合GC和盐皮质激素醛固酮。由于这些受体在其DNA结合结构域中具有95%的同一性;两者都可以识别相同的激素反应成分;理论上导致相同靶基因的转录调控。但是,通过调节活性GC的局部可用性,特定激活GR和/或MR的主要机制是在受体之前。此外,每个受体与时空调节的转录因子和共调节剂的选择性相互作用对于最终的转录结果至关重要。尽管有大量的全基因组研究确定了各种组织和细胞类型中的GR转录靶点;包括角质形成细胞;到目前为止,MR的数据受到更多限制。我们的小组和其他小组通过生成和表征具有每种受体功能增强和丧失功能的小鼠和细胞模型,研究了GRs和MR在皮肤发育和疾病中的作用。两种NR都是小鼠发育过程中皮肤屏障能力所必需的,并且在成人皮肤体内稳态中也起作用。而且,相对于发育中的皮肤以及急性炎症和牛皮癣中的单敲除(KO),表皮GR和MR的共同丧失导致更严重的皮肤表型,表明这些皮质类固醇受体起着协同作用。了解皮肤中GR和MR介导的信号传导应有助于破译它们的组织特异性相对作用,并最终有助于改善基于GC的疗法。

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