Department of Food Engineering, Faculty of Engineering, University of Szeged, Hungary.
Department of Psychiatry, Charité-Campus Benjamin Franklin, Section Neurobiology, University Medicine Berlin, Germany.
Int J Vitam Nutr Res. 2024 Jun;94(5-6):443-475. doi: 10.1024/0300-9831/a000808.
A healthy and balanced diet is an important factor to assure a good functioning of the central and peripheral nervous system. Retinoid X receptor (RXR)-mediated signaling was identified as an important mechanism of transmitting major diet-dependent physiological and nutritional signaling such as the control of myelination and dopamine signalling. Recently, vitamin A5/X, mainly present in vegetables as provitamin A5/X, was identified as a new concept of a vitamin which functions as the nutritional precursor for enabling RXR-mediated signaling. The active form of vitamin A5/X, 9--13,14-dehydroretinoic acid (9CDHRA), induces RXR-activation, thereby acting as the central switch for enabling various heterodimer-RXR-signaling cascades involving various partner heterodimers like the fatty acid and eicosanoid receptors/peroxisome proliferator-activated receptors (PPARs), the cholesterol receptors/liver X receptors (LXRs), the vitamin D receptor (VDR), and the vitamin A(1) receptors/retinoic acid receptors (RARs). Thus, nutritional supply of vitamin A5/X might be a general nutritional-dependent switch for enabling this large cascade of hormonal signaling pathways and thus appears important to guarantee an overall organism homeostasis. RXR-mediated signaling was shown to be dependent on vitamin A5/X with direct effects for beneficial physiological and neuro-protective functions mediated systemically or directly in the brain. In summary, through control of dopamine signaling, amyloid β-clearance, neuro-protection and neuro-inflammation, the vitamin A5/X - RXR - RAR - vitamin A(1)-signaling might be "one of" or even "the" critical factor(s) necessary for good mental health, healthy brain aging, as well as for preventing drug addiction and prevention of a large array of nervous system diseases. Likewise, vitamin A5/X - RXR - non-RAR-dependent signaling relevant for myelination/re-myelination and phagocytosis/brain cleanup will contribute to such regulations too. In this review we discuss the basic scientific background, logical connections and nutritional/pharmacological expert recommendations for the nervous system especially considering the ageing brain.
健康均衡的饮食是确保中枢和周围神经系统良好运作的重要因素。视黄醇 X 受体 (RXR) 介导的信号转导被确定为传递主要的饮食依赖性生理和营养信号的重要机制,如髓鞘形成和多巴胺信号的控制。最近,维生素 A5/X(主要以维生素 A5/X 前体形式存在于蔬菜中)被确定为一种新的维生素概念,作为使 RXR 介导的信号转导成为可能的营养前体。维生素 A5/X 的活性形式,9--13,14-脱氢视黄酸(9CDHRA),诱导 RXR 激活,从而作为使各种异二聚体-RXR 信号级联反应的中央开关,涉及各种伴侣异二聚体,如脂肪酸和类二十烷酸受体/过氧化物酶体增殖物激活受体 (PPARs)、胆固醇受体/肝 X 受体 (LXRs)、维生素 D 受体 (VDR) 和维生素 A(1)受体/视黄酸受体 (RARs)。因此,维生素 A5/X 的营养供应可能是使这一大串激素信号通路成为可能的一般营养依赖性开关,因此对于保证整体机体的内稳态似乎很重要。RXR 介导的信号转导依赖于维生素 A5/X,具有直接的有益生理和神经保护功能,通过全身或直接在大脑中介导。总之,通过控制多巴胺信号、淀粉样蛋白 β 清除、神经保护和神经炎症,维生素 A5/X - RXR - RAR - 维生素 A(1)-信号可能是“之一”,甚至是“必需的”对于良好的心理健康、健康的大脑衰老、预防药物成瘾和预防一系列神经系统疾病的关键因素之一。同样,与髓鞘形成/再髓鞘形成和吞噬作用/大脑清理相关的维生素 A5/X - RXR - 非 RAR 依赖性信号转导也将对此类调节做出贡献。在这篇综述中,我们讨论了基础科学背景、逻辑联系以及对神经系统的营养/药理学专家建议,特别是考虑到衰老的大脑。