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维生素 D 的营养基因组学

Nutrigenomics of Vitamin D.

机构信息

School of Medicine, Institute of Biomedicine, University of Eastern Finland, FI-70211 Kuopio, Finland.

出版信息

Nutrients. 2019 Mar 21;11(3):676. doi: 10.3390/nu11030676.

Abstract

Nutrigenomics studies how environmental factors, such as food intake and lifestyle, influence the expression of the genome. Vitamin D₃ represents a master example of nutrigenomics, since via its metabolite 1α,25-dihydroxyvitamin D₃, which binds with high-affinity to the vitamin D receptor, the secosteroid directly affects the epigenome and transcriptome at thousands of loci within the human genome. Vitamin D is important for both cellular metabolism and immunity, as it controls calcium homeostasis and modulates the response of the innate and adaptive immune system. At sufficient UV-B exposure, humans can synthesize vitamin D₃ endogenously in their skin, but today's lifestyle often makes the molecule a true vitamin and micronutrient that needs to be taken up by diet or supplementation with pills. The individual's molecular response to vitamin D requires personalized supplementation with vitamin D₃, in order to obtain optimized clinical benefits in the prevention of osteoporosis, sarcopenia, autoimmune diseases, and possibly different types of cancer. The importance of endogenous synthesis of vitamin D₃ created an evolutionary pressure for reduced skin pigmentation, when, during the past 50,000 years, modern humans migrated from Africa towards Asia and Europe. This review will discuss different aspects of how vitamin D interacts with the human genome, focusing on nutritional epigenomics in context of immune responses. This should lead to a better understanding of the clinical benefits of vitamin D.

摘要

营养基因组学研究环境因素(如饮食和生活方式)如何影响基因组的表达。维生素 D₃ 是营养基因组学的一个主要范例,因为其代谢产物 1α,25-二羟维生素 D₃ 通过与维生素 D 受体的高亲和力结合,直接影响人类基因组中数千个基因座的表观基因组和转录组。维生素 D 对细胞代谢和免疫都很重要,因为它控制着钙稳态,并调节先天和适应性免疫系统的反应。在足够的 UV-B 暴露下,人类可以在皮肤内内源性合成维生素 D₃,但当今的生活方式常常使这种分子成为真正的维生素和微量营养素,需要通过饮食或药丸补充来摄取。个体对维生素 D 的分子反应需要个性化补充维生素 D₃,以在预防骨质疏松症、肌肉减少症、自身免疫性疾病以及可能的不同类型的癌症方面获得最佳的临床获益。内源性合成维生素 D₃ 的重要性为皮肤色素沉着减少创造了进化压力,在过去的 5 万年中,现代人从非洲向亚洲和欧洲迁移。本文将讨论维生素 D 与人类基因组相互作用的不同方面,重点关注免疫反应背景下的营养表观基因组学。这应该有助于更好地理解维生素 D 的临床益处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/daaf/6470874/4eb186cabb99/nutrients-11-00676-g001.jpg

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