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孤儿人类细胞色素P450的特性分析

Characterization of orphan human cytochromes P450.

作者信息

Stark Katarina, Guengerich F Peter

机构信息

Department of Biochemistry and Center in Molecular Toxicology, Vanderbilt University School of Medicine, Nashville, Tennessee 37232-0146, USA.

出版信息

Drug Metab Rev. 2007;39(2-3):627-37. doi: 10.1080/03602530701467708.

Abstract

Of the 57 human cytochromes P450 (P450) and 58 pseudogenes discovered to date, (http://drnelson.utmem.edu/CytochromeP450.html ), 1/4 still remain "orphans" in the sense that their function, expression sites, and regulation are still largely not elucidated. The post-human genome-sequencing project era has presented the research community with novel challenges. Despite many insights gathered about gene location and genetic variations in our human genome, we still lack important knowledge about these novel P450 enzymes and their functions in endogenous and exogenous metabolism, as well as their possible roles in the metabolism of toxicants and carcinogens. Our own list of such orphans currently consists of 13 members: P450 2A7, 2S1, 2U1, 2W1, 3A43, 4A22, 4F11, 4F22, 4V2, 4X1, 4Z1, 20A1, and 27C1. Some of the orphans, e.g. P450s 2W1 and 2U1, already have putative assigned functions in arachidonic acid metabolism and may activate carcinogens. However, at this point, for the majority of them more knowledge is available about their genes and single nucleotide polymorphisms than of their biological functions. It is noteworthy that most P450 orphans express high interspecies sequence conservation and have orthologs in rodents (e.g. CYP4X1/Cyp4x1, CYP4V2/Cyp4v3). This review summarizes recent knowledge about the P450 orphans and questions remaining about their specific roles in human metabolism.

摘要

在迄今发现的57种人类细胞色素P450(P450)和58个假基因中(http://drnelson.utmem.edu/CytochromeP450.html),四分之一仍然属于“孤儿”,即它们的功能、表达位点和调控在很大程度上仍未阐明。人类基因组测序项目后的时代给研究界带来了新的挑战。尽管我们已经获得了许多关于人类基因组中基因定位和基因变异的见解,但我们仍然缺乏关于这些新型P450酶及其在内源和外源代谢中的功能,以及它们在毒物和致癌物代谢中可能作用的重要知识。我们列出的此类“孤儿”目前有13个成员:P450 2A7、2S1、2U1、2W1、3A43、4A22、4F11、4F22、4V2、4X1、4Z1、20A1和27C1。一些“孤儿”,如P450 2W1和2U1,在花生四烯酸代谢中已经有假定的功能,可能激活致癌物。然而,目前对于它们中的大多数,我们对其基因和单核苷酸多态性的了解比对其生物学功能的了解更多。值得注意的是,大多数P450“孤儿”表现出高度的种间序列保守性,并且在啮齿动物中有直系同源物(例如CYP4X1/Cyp4x1、CYP4V2/Cyp4v3)。本综述总结了关于P450“孤儿”的最新知识以及关于它们在人类代谢中具体作用仍存在的问题。

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