Ioannides Costas
Molecular Toxicology Group, School of Biomedical and Molecular Sciences, University of Surrey, Guildford, Surrey, GU2 7XH, UK.
Curr Drug Metab. 2006 May;7(4):335-48. doi: 10.2174/138920006776873544.
A number of enzyme systems participate in the metabolism of chemicals, but undoubtedly the most important are the cytochromes P450 (CYP). It is a versatile enzyme system, capable of metabolising structurally diverse chemicals. To achieve this broad substrate specificity it exists as a superfamily of enzymes, each family being characterised by different substrate specificity; families CYP1, CYP2 and CYP3 are responsible for the metabolism of exogenous chemicals. Although our current knowledge of the expression and function of cytochromes P450 in humans and laboratory animals is extensive, little is known about this enzyme system in food-producing animals, despite its dominant role in the metabolism of veterinary drugs, and the crucial role it plays in controlling the levels of drug and other chemical residues in edible tissues and food products that humans consume, a matter of major current concern. Most studies dealing with the expression of cytochromes P450 in food-producing animals utilised substrate probes defined in rats and humans and/or antibodies raised to rat or human antigens. Such an approach can prove misleading as it assumes that orthologue proteins in other animals share the same substrate specificity and, moreover, although antibodies raised to human or rat antigens may recognise epitopes in other species, they do not constitute unequivocal proof that the detected proteins are structurally identical. Despite these drawbacks, there is substantial experimental evidence that CYP1, CYP2 and CYP3 families are expressed in food-producing animals, but their role in the metabolism of veterinary drugs and other xenobiotics has not been addressed.
许多酶系统参与化学物质的代谢,但细胞色素P450(CYP)无疑是其中最重要的。它是一个多功能酶系统,能够代谢结构多样的化学物质。为了实现这种广泛的底物特异性,它以酶的超家族形式存在,每个家族具有不同的底物特异性;CYP1、CYP2和CYP3家族负责外源性化学物质的代谢。尽管我们目前对人类和实验动物中细胞色素P450的表达和功能已有广泛了解,但对于产食动物中的这个酶系统却知之甚少,尽管它在兽药代谢中起主导作用,且在控制人类食用的可食组织和食品中药物及其他化学残留物水平方面发挥着关键作用,这是当前备受关注的问题。大多数关于产食动物中细胞色素P450表达的研究使用的是在大鼠和人类中定义的底物探针和/或针对大鼠或人类抗原产生的抗体。这种方法可能会产生误导,因为它假定其他动物中的直系同源蛋白具有相同的底物特异性,而且,尽管针对人类或大鼠抗原产生的抗体可能识别其他物种中的表位,但它们并不能确凿证明所检测到的蛋白质在结构上是相同的。尽管存在这些缺点,但有大量实验证据表明CYP1、CYP2和CYP3家族在产食动物中表达,但其在兽药和其他外源性物质代谢中的作用尚未得到研究。