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维生素 D 信号转导及其治疗应用的现状。

Current status of vitamin D signaling and its therapeutic applications.

机构信息

Department of Biosciences, University of Eastern Finland, P.O. Box 1627, FIN-70211 Kuopio, Finland.

出版信息

Curr Top Med Chem. 2012;12(6):528-47. doi: 10.2174/156802612799436623.

Abstract

Vitamin D and in particular its biologically most active metabolite, 1α,25-dihydroxyvitamin D₃ (1α,25(OH)₂D₃), are central endocrine molecules that influence many aspects of human physiology, which are not only the well-known calcium and phosphorus up-take and transport controlling bone formation, but also the control of immune functions and of cellular growth and differentiation. Basically all actions of 1α,25(OH)₂D₃ are mediated by the transcription factor vitamin D receptor (VDR). The crystal structure of the VDR and detailed knowledge on its molecular interactions with the ligand provide significant insight into the mechanisms of vitamin D signaling. This applies also on the action of the huge number of synthetic 1α,25(OH)₂D₃ analogues, which have been developed with the goal of a therapeutic application in hyper-proliferative diseases, such as psoriasis, benign prostate hyperplasia and different types of cancer, in immune functions, such as autoimmune diseases and microbial infections, or in bone disorders, such as osteoporosis. Moreover, detailed investigations on many VDR target genes and in particular the recently available genome-wide view on vitamin D signaling allows a more complete view on the potential of the nuclear hormone. In this review we discuss the latest insight into vitamin D signaling in context with the most prominent 1α,25(OH)₂D₃ analogues.

摘要

维生素 D,尤其是其生物活性最强的代谢物 1α,25-二羟维生素 D₃(1α,25(OH)₂D₃),是影响人体生理多方面的重要内分泌分子,其作用不仅包括众所周知的钙磷吸收和转运以控制骨形成,还包括免疫功能、细胞生长和分化的调控。1α,25(OH)₂D₃ 的基本所有作用都是通过转录因子维生素 D 受体(VDR)介导的。VDR 的晶体结构及其与配体的分子相互作用的详细知识为维生素 D 信号转导的机制提供了重要的见解。这也适用于大量合成的 1α,25(OH)₂D₃ 类似物的作用,这些类似物的开发目标是在增生性疾病(如银屑病、良性前列腺增生和不同类型的癌症)、免疫功能(如自身免疫性疾病和微生物感染)或骨疾病(如骨质疏松症)中进行治疗应用。此外,对许多 VDR 靶基因的详细研究,特别是最近对维生素 D 信号的全基因组研究,使人们对核激素的潜在作用有了更全面的认识。在这篇综述中,我们讨论了维生素 D 信号转导的最新研究进展,并结合了最突出的 1α,25(OH)₂D₃ 类似物进行了讨论。

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