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Carotenoid metabolism in mammals, including man: formation, occurrence, and function of apocarotenoids Thematic Review Series: Fat-Soluble Vitamins: Vitamin A

机译:包括人在内的哺乳动物中的类胡萝卜素代谢:类胡萝卜素的形成,发生和功能专题综述系列:脂溶性维生素:维生素A

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Vitamin A was recognized as an essential nutrient 100 years ago. In the 1930s, it became clear that dietary {beta}-carotene was cleaved at its central double to yield vitamin A (retinal or {beta}-apo-15'-carotenal). Thus a great deal of research has focused on the central cleavage of provitamin A carotenoids to form vitamin A (retinoids). The mechanisms of formation and the physiological role(s) of noncentral (eccentric) cleavage of both provitamin A carotenoids and nonprovitamin A carotenoids has been less clear. It is becoming apparent that the apocarotenoids exert unique biological activities themselves. These compounds are found in the diet and thus may be absorbed in the intestine, or they may form from enzymatic or nonenzymatic cleavage of the parent carotenoids. The mechanism of action of apocarotenoids in mammals is not fully worked out. However, as detailed in this review, they have profound effects on gene expression and work, at least in part, through the modulation of ligand-activated nuclear receptors. Understanding the interactions of apocarotenoids with other lipid-binding proteins, chaperones, and metabolizing enzymes will undoubtedly increase our understanding of the biological roles of these carotenoid metabolites.
机译:维生素A在100年前被认为是必需的营养素。在1930年代,很明显,饮食中的β-胡萝卜素在其中央双部分被裂解,产生维生素A(视网膜或β-apo-15'-胡萝卜素)。因此,大量研究集中在原维生素A类胡萝卜素的中心裂解以形成维生素A(类维生素A)上。原维生素A类胡萝卜素和非维生素原A类胡萝卜素的非中心(偏心)裂解的机理和生理作用尚不清楚。显而易见的是,类胡萝卜素本身具有独特的生物学活性。这些化合物存在于饮食中,因此可以在肠道中吸收,或者可以通过母体类胡萝卜素的酶促或非酶促裂解形成。类胡萝卜素在哺乳动物中的作用机理尚未完全阐明。但是,正如本综述所详述,它们至少部分地通过调节配体激活的核受体而对基因表达和工作产生深远影响。理解类胡萝卜素与其他脂质结合蛋白,分子伴侣和代谢酶的相互作用,无疑将增加我们对这些类胡萝卜素代谢物生物学作用的了解。

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