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维生素 D:一种古老的激素。

Vitamin D: an ancient hormone.

机构信息

San Francisco Veterans Affairs Medical Center, University of California at San Francisco, CA, USA.

出版信息

Exp Dermatol. 2011 Jan;20(1):7-13. doi: 10.1111/j.1600-0625.2010.01202.x.

Abstract

Vitamin D has been produced by plants and animals almost from the time life began. The ability to transport and metabolize vitamin D to more active forms evolved as the structures of plants and animals became more complex, and the cells within these organisms took on more specialized functions. In higher-order animals, the vitamin D receptor (VDR) is found in nearly every cell, and the ability of the cell to produce the active hormone, 1,25(OH)2D, is also widely distributed. Furthermore, the physiological functions with which vitamin D signalling is now associated are as diverse as the tissues in which the VDR is located. Why is this, and is there a common theme? This viewpoint article argues that there is. All cells maintain a fairly constant and submicromolar concentration of free calcium. Calcium is an important regulator of many processes within the cell. The ebb and flow of calcium within cells is controlled by calcium pumps, antiporters and channels. Animals with calcified exo- or endoskeletons have an additional need for calcium, a need that changes during the life cycle of the organism. In this article, I make the case that vitamin D signalling evolved to enable the organism to effectively regulate calcium flux, storage and signalling and that such regulation is critical for the evolutionary process.

摘要

维生素 D 几乎从生命诞生之初就由植物和动物产生。随着植物和动物结构变得更加复杂,以及这些生物体内的细胞承担更多特定的功能,运输和代谢维生素 D 以形成更活跃形式的能力也随之进化。在高等动物中,维生素 D 受体(VDR)几乎存在于每个细胞中,并且细胞产生活性激素 1,25(OH)2D 的能力也广泛分布。此外,维生素 D 信号传导现在与之相关的生理功能与 VDR 所在的组织一样多样化。为什么会这样,是否存在共同的主题?这篇观点文章认为存在这样的主题。所有细胞都维持着相当恒定的亚毫摩尔浓度的游离钙。钙是细胞内许多过程的重要调节剂。细胞内钙的涨落由钙泵、反向转运蛋白和通道控制。具有钙化外骨骼或内骨骼的动物对钙有额外的需求,这种需求在生物体的生命周期中会发生变化。在本文中,我提出这样一个观点,即维生素 D 信号传导的进化是为了使生物体能够有效地调节钙流、储存和信号传导,而这种调节对于进化过程至关重要。

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