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Vitamin D metabolism and signaling in the immune system

机译:免疫系统中的维生素D代谢和信号传导

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Vitamin D has emerged as a pleiotropic regulator of human physiology, and recent work has revealed that it has several roles in control of human immune system function. Vitamin D was originally characterized for its role in calcium homeostasis, and the active form, 1,25-dihydroxyvitamin D (1,25D), can be produced in the kidney by 1α-hydroxylation of circulating 25-hydroxyvitamin D catalyzed by the enzyme CYP27B1. Renal CYP27B1 expression is regulated by calcium regulatory inputs, and 1,25D produced in the kidney was thought to function largely as an endocrine hormone. However, it is now clear that CYP27B1 is expressed in numerous tissues, and that 1,25D acts at several sites in the body in an intracrine or paracrine manner. In particular, both CYP27B1 and the vitamin D receptor (VDR) are expressed in several cell types in the immune system, where CYP27B1 production is controlled by a number of immune-specific inputs. Recent research has opened several windows on the molecular mechanisms by which 1,25D signaling regulates both innate and adaptive immune responses in humans. Moreover, intervention trials are beginning to provide evidence that vitamin D supplementation can bolster clinical responses to infection. This review will discuss recent developments in our understanding of how immune signaling controls local vitamin D metabolism and how, in turn, the 1,25D-bound VDR modulates immune system function. A particular emphasis will be placed on the interplay between vitamin D signaling and signaling through different classes of pattern recognition receptors in the production of antimicrobial peptides during innate immune responses to microbial infection.
机译:维生素D已成为人类生理功能的多效调节剂,最近的工作表明,它在控制人体免疫系统功能中具有多种作用。维生素D最初因其在钙稳态中的作用而被表征,其活性形式1,25-二羟基维生素D(1,25D)可通过CYP27B1酶催化循环的25-羟基维生素D的1α-羟基化而在肾脏中产生。 。肾CYP27B1的表达受钙调节输入的调节,肾脏中产生的1,25D被认为在很大程度上起内分泌激素的作用。但是,现在清楚的是,CYP27B1在许多组织中表达,并且1,25D以体内分泌或旁分泌的方式作用于体内的几个部位。特别是,CYP27B1和维生素D受体(VDR)均在免疫系统的几种细胞类型中表达,其中CYP27B1的产生受许多免疫特异性输入控制。最近的研究为1,25D信号调节人类先天和适应性免疫应答的分子机制打开了几个窗口。此外,干预试验开始提供证据,证明补充维生素D可以增强对感染的临床反应。这篇综述将讨论我们对免疫信号如何控制局部维生素D代谢以及与1,25D结合的VDR如何调节免疫系统功能的理解的最新进展。在对微生物感染的先天免疫应答过程中,将特别强调维生素D信号与通过不同类别的模式识别受体进行信号传导之间的相互作用。

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