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多发性硬化症中维生素 D-VDR 复合物的基因组结合位点和生物学效应 [已更正]。

Genomic binding sites and biological effects of the vitamin D--VDR complex in multiple sclerosis [corrected].

机构信息

Faculty of Health Sciences, University of Pecs, Center for Research and Education, Markusovszky University Teaching Hospital, Markusovszky Street 5, 9700, Szombathely, Hungary,

出版信息

Neuromolecular Med. 2014 Jun;16(2):265-79. doi: 10.1007/s12017-014-8301-2. Epub 2014 Apr 8.

Abstract

Environmental factors greatly contribute to the development of complex trait disorders. With the rapid developments in the fields of biotechnology and informatics, the investigations of molecular interactions between host and environmental factors became very detailed and comprehensive. The effects of ultraviolet irradiation, vitamin D synthesis, and receptor binding, and then the involvements of the ligand-receptor complexes in the regulation of cell function received much attention in the last few years and paralleled the accumulation of information concerning genetic determinants of disease susceptibility, transcriptional regulation, cell cycle, mitochondrial biochemistry, and many other elements of cell biology. The importance of vitamin D in contributing to immune regulation, autoimmunity, and susceptibility to multiple sclerosis (MS) is now also recognized, and there are ongoing treatment trials with vitamin D to define whether it is capable of modifying susceptibility to or the course of the disease. This survey aims to capture that part of vitamin D research that helps to better understand the interactions of this molecule and its receptor with the human genome, and the downstream effects of these interactions relevant to immune homeostasis and MS. This relatively narrow scope reveals a very complex molecular network underlying inflammatory demyelination and allows us to hope that a better understanding of the roles of vitamin D and other environmental factors will once make the risk of MS modifiable or, to some degrees, the disease preventable.

摘要

环境因素对复杂特征障碍的发展有很大影响。随着生物技术和信息学领域的快速发展,宿主和环境因素之间的分子相互作用的研究变得非常详细和全面。紫外线照射、维生素 D 合成和受体结合的影响,以及配体-受体复合物在细胞功能调节中的参与,近年来受到了很大关注,同时也积累了有关疾病易感性的遗传决定因素、转录调控、细胞周期、线粒体生物化学和细胞生物学的许多其他元素的信息。维生素 D 对免疫调节、自身免疫和多发性硬化症 (MS) 易感性的重要性现在也得到了认可,并且正在进行维生素 D 的治疗试验,以确定它是否能够改变对疾病的易感性或病程。本调查旨在了解有助于更好地理解这种分子及其受体与人类基因组相互作用的那部分维生素 D 研究,以及这些相互作用对免疫稳态和 MS 相关的下游影响。这一相对狭窄的研究范围揭示了炎症性脱髓鞘背后非常复杂的分子网络,使我们有希望更好地了解维生素 D 和其他环境因素的作用,从而使 MS 的风险变得可改变,或者在某种程度上使疾病变得可预防。

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