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Light-mediated retinoic acid production.

机译:光介导的维甲酸生产。

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摘要

Retinoids serve two main functions in biology: retinaldehyde forms the chromophore bound to opsins, and retinoic acid (RA) is the activating ligand of transcription factors. These two functions are linked in the vertebrate eye: we describe here that illumination of the retina results in an increase in RA synthesis, as detected with a RA bioassay and by HPLC. The synthesis is mediated by retinaldehyde dehydrogenases which convert some of the chromophore all-trans retinaldehyde, released from bleached rhodopsin, into RA. As the eye contains high levels of retinaldehyde dehydrogenases, and as the oxidation of retinaldehyde is an irreversible reaction, RA production has to be considered an unavoidable by-product of light. Through RA synthesis, light can thus directly influence gene transcription in the eye, which provides a plausible mechanism for light effects that cannot be explained by electric activity. Whereas the function of retinaldehyde as chromophore is conserved from bacteria to mammals, RA-mediated transcription is fully evolved only in vertebrates. Invertebrates differ from vertebrates in the mechanism of chromophore regeneration: while in the invertebrate visual cycle the chromophore remains bound, it is released as free all-trans retinaldehyde from illuminated vertebrate rhodopsin. RA synthesis occurring as corollary of dark regeneration in the vertebrate visual cycle may have given rise to the expansion of RA-mediated transcriptional regulation.
机译:维甲酸在生物学中起两个主要功能:维甲酸形成与视蛋白结合的生色团,维甲酸(RA)是转录因子的活化配体。这两个功能在脊椎动物的眼睛中相关联:我们在这里描述了视网膜的照明导致RA合成的增加,这是通过RA生物测定法和HPLC检测到的。合成由视黄醛脱氢酶介导,视黄醛脱氢酶将从漂白的视紫红质释放的一些生色团全反式视黄醛转化为RA。由于眼睛中含有大量的视黄醛脱氢酶,并且视黄醛的氧化是不可逆的反应,因此必须将RA的产生视为光的不可避免的副产物。通过RA合成,光因此可以直接影响眼睛中的基因转录,这为电效应无法解释的光效应提供了一种合理的机制。视黄醛作为生色团的功能从细菌到哺乳动物均得以保留,而RA介导的转录仅在脊椎动物中完全发生。无脊椎动物与脊椎动物的生色团再生机理不同:在无脊椎动物的视觉循环中,生色团保持结合状态,但从发光的脊椎动物视紫红质中以游离的全反式视黄醛形式释放。 RA合成作为脊椎动物视觉周期中黑暗再生的必然结果可能引起了RA介导的转录调控的扩展。

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