Ryan Jackson W, Anderson Paul H, Morris Howard A
Musculoskeletal Research Laboratory, University of South Australia, Adelaide, SA, 5000 Australia;
Musculoskeletal Research Laboratory, University of South Australia, Adelaide, SA, 5000 Australia; ; Chemical Pathology Directorate, SA Pathology, Adelaide, SA 5000 Australia.
Clin Biochem Rev. 2015 May;36(2):53-61.
The vitamin D receptor (VDR), a nuclear transcription factor, elicits physiological regulation of gene transcription following binding of its ligand, 1,25-dihydroxyvitamin D. The major biological activities of vitamin D contribute to regulation of plasma calcium and phosphate homeostasis and bone remodeling, although recent evidence suggests that vitamin D, like other steroid hormone receptors, can regulate a diverse range of biological activities across many tissues. Such properties raise the notion that vitamin D deficiency may not only be detrimental to bone and muscular health, but also a risk factor for a number of adverse health outcomes including increased risk of cardiovascular disease, inflammation, immune system disorders and cancer. Advances in transcriptional research provide data not only on ligand-dependent activities of the VDR, but other activities of vitamin D extending to rapid modulation of intra-cellular signaling pathways as well as apparent ligand-independent interactions between the VDR and other transcriptionally active proteins. In this review, we detail the chief molecular activities of the VDR in regulating gene transcription, intracellular signaling and actions of VDR via binding to transcriptional regulating proteins. The breadth of biological activities attributed to vitamin D informs clinical biochemists and health care professionals on the implications of vitamin D deficiency for health.
维生素D受体(VDR)是一种核转录因子,在其配体1,25 - 二羟基维生素D结合后引发基因转录的生理调节。维生素D的主要生物学活性有助于调节血浆钙和磷的稳态以及骨重塑,尽管最近的证据表明,维生素D与其他类固醇激素受体一样,可以调节许多组织中的多种生物学活性。这些特性引发了这样一种观念,即维生素D缺乏不仅可能对骨骼和肌肉健康有害,而且是许多不良健康结果的风险因素,包括心血管疾病、炎症、免疫系统紊乱和癌症风险增加。转录研究的进展不仅提供了关于VDR配体依赖性活性的数据,还提供了维生素D的其他活性数据,这些活性延伸到细胞内信号通路的快速调节以及VDR与其他转录活性蛋白之间明显的配体非依赖性相互作用。在这篇综述中,我们详细阐述了VDR在调节基因转录、细胞内信号传导以及通过与转录调节蛋白结合而产生的作用方面的主要分子活性。维生素D具有广泛的生物学活性,这使临床生物化学家和医疗保健专业人员了解维生素D缺乏对健康的影响。