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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Mammalian carotenoid-oxygenases: key players for carotenoid function and homeostasis.
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Mammalian carotenoid-oxygenases: key players for carotenoid function and homeostasis.

机译:哺乳动物类胡萝卜素 - 氧气酶:类胡萝卜素功能和稳态的关键参与者。

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Humans depend on a dietary intake of lipids to maintain optimal health. Among various classes of dietary lipids, the physiological importance of carotenoids is still controversially discussed. On one hand, it is well established that carotenoids, such as β,β-carotene, are a major source for vitamin A that plays critical roles for vision and many aspects of cell physiology. On the other hand, large clinical trials have failed to show clear health benefits of carotenoids supplementation and even suggest adverse health effects in individuals at risk of disease. In recent years, key molecular players for carotenoid metabolism have been identified, including an evolutionarily well conserved family of carotenoid-oxygenases. Studies in knockout mouse models for these enzymes revealed that carotenoid metabolism is a highly regulated process and that this regulation already takes place at the level of intestinal absorption. These studies also provided evidence that β,β-carotene conversion can influence retinoid-dependent processes in the mouse embryo and in adult tissues. Moreover, these analyses provide an explanation for adverse health effects of carotenoids by showing that a pathological accumulation of these compounds can induce oxidative stress in mitochondria and cell signaling pathways related to disease. Advancing knowledge about carotenoid metabolism will contribute to a better understanding of the biochemical and physiological roles of these important micronutrients in health and disease. This article is part of a Special Issue entitled Retinoid and Lipid Metabolism.
机译:人类依赖于饮食摄入脂质以保持最佳的健康。在各种膳食脂质中,类胡萝卜素的生理重要性仍然有争议地讨论。一方面,很好地建立了类胡萝卜素,例如β,β-胡萝卜素,是维生素A的主要来源,它对视力和细胞生理学的许多方面起着关键作用。另一方面,大型临床试验未能表现出类胡萝卜素补充的清晰健康益处,甚至表达了疾病风险的个体的不良健康影响。近年来,已经鉴定了用于类胡萝卜素代谢的关键分子参与者,包括进化良好保守的类胡萝卜素 - 氧酶。这些酶的敲除小鼠模型的研究表明,类胡萝卜素代谢是一种高度调节的过程,并且该调节已经在肠道吸收水平处发生。这些研究还提供了证据,即β,β-胡萝卜素转化可以影响小鼠胚胎和成人组织中的类依赖性过程。此外,这些分析通过表明这些化合物的病理积累可以诱导与疾病相关的线粒体和细胞信号传导途径可以诱导氧化应激的病理积累来提供类胡萝卜素的不良健康影响的解释。推进类胡萝卜素代谢的知识将有助于更好地了解这些重要微量营养素在健康和疾病中的生化和生理作用。本文是特殊问题的一部分,标题为类视黄素和脂质代谢。

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