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维生素 A:从视力和突触可塑性到婴儿死亡率的多种作用。

Vitamin A: its many roles-from vision and synaptic plasticity to infant mortality.

机构信息

Department of Molecular and Cellular Biology, Harvard University, 52 Oxford Street, Cambridge, MA, 02138, USA.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2020 May;206(3):389-399. doi: 10.1007/s00359-020-01403-z. Epub 2020 Feb 7.

Abstract

The recognition that a dietary factor is essential to maintain good and sensitive vision as well as overall health goes back over 3,000 years to the ancient Egyptians. With the discovery of the vitamins at the turn of the twentieth century, fat-soluble vitamin A was soon shown to be the essential factor. In the first half of the twentieth century, the role vitamin A plays in vision, as precursor to the light-sensitive visual pigment molecules in the photoreceptors was elegantly worked out, especially by George Wald and his colleagues. Beginning in the 1960s, with the recognition of the active metabolite of vitamin A, its acid form now called retinoic acid, the roles of vitamin A in maintaining overall health of an organism began to be explored, and this research continues to this day. Receptors activated by retinoic acid, the RARs and RXRs have been shown to regulate gene transcription in a surprisingly wide variety of biological processes from early growth and development to the maintenance of epithelial tissues in many organs, the regulation of the immune system, and even the modulation of synaptic function in the brain involved in mechanisms underlying memory and learning. Therapeutic uses for retinoic acid have been developed, including one for a specific form of leukemia. The story is by no means complete and it is likely more surprises await with regard to this remarkable molecule.

摘要

早在 3000 多年前,古埃及人就认识到饮食因素对保持良好和敏感的视力以及整体健康至关重要。随着 20 世纪初维生素的发现,脂溶性维生素 A 很快被证明是必需因素。在 20 世纪上半叶,乔治·沃尔德 (George Wald) 及其同事们巧妙地阐明了维生素 A 在视觉中的作用,作为光感受器中光敏感视觉色素分子的前体。从 20 世纪 60 年代开始,随着维生素 A 的活性代谢物——现在称为维甲酸的酸形式的发现,人们开始探索维生素 A 在维持生物体整体健康方面的作用,这项研究一直持续到今天。现已证明,维甲酸激活的受体,即 RARs 和 RXRs,可调节从早期生长和发育到许多器官上皮组织的维持、免疫系统的调节,甚至参与记忆和学习机制的大脑中突触功能的调节等各种生物过程中的基因转录。已经开发出维甲酸的治疗用途,包括一种用于特定形式白血病的用途。这个故事远未结束,关于这种非凡的分子,可能还有更多惊喜在等待着我们。

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