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首页> 外文期刊>Drug metabolism and drug interactions >Human cytochrome P450 4F3: structure, functions, and prospects.
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Human cytochrome P450 4F3: structure, functions, and prospects.

机译:人类细胞色素P450 4F3:结构,功能和前景。

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摘要

Abstract Cytochrome P450 4F3 (CYP4F3), originally identified as one of the leukotriene B4 ω-hydroxylases, belongs to a CYP gene family that comprises several members, which participate in the metabolism of various endobiotics, as well as some xenobiotics. The CYP4F gene family is clustered in a 0.5-Mb stretch of genomic DNA on the p13 region of chromosome 19. Apart from the ω-hydroxylation of leukotriene B4 and prostaglandins, CYP4F3 is the main catalyst in the oxidation of fatty acid epoxides. CYP4F3 expression results from the synthesis of two distinct enzymes, CYP4F3A and CYP4F3B, which originate from the alternative splicing of a single pre-mRNA precursor molecule. Remarkably, the selection of either isoform is part of a tissue-specific control through which CYP3F3A is mostly expressed in leukocytes and CYP4F3B mostly in the liver. Recently, CYP4F3 single nucleotide polymorphisms have been incriminated in the onset of pathologies, including celiac or Crohn's diseases. Although much has been discovered in the regulation and function of CYP4F2, the closest CYP4F subfamily member, analyses of CYP4F3 enzymes lag somewhat behind in the field of our knowledge. In this short review, emphasis will be placed on the regulation and the functional roles of human CYP4F3.
机译:摘要细胞色素P450 4F3(CYP4F3)最初被确定为白三烯B4ω-羟化酶之一,属于一个CYP基因家族,由多个成员组成,参与各种内生生物和一些异源生物的代谢。 CYP4F基因家族聚集在19号染色体p13区域的0.5 Mb基因组DNA片段中。除了白三烯B4和前列腺素的ω-羟基化作用外,CYP4F3是脂肪酸环氧化物氧化的主要催化剂。 CYP4F3的表达源于两种不同酶CYP4F3A和CYP4F3B的合成,这是由单个pre-mRNA前体分子的可变剪接产生的。值得注意的是,选择任何一种亚型都是组织特异性对照的一部分,通过该组织,CYP3F3A主要在白细胞中表达,而CYP4F3B主要在肝脏中表达。最近,CYP4F3单核苷酸多态性已被证实与包括乳糜泻或克罗恩氏病在内的病理学发病有关。尽管在最接近的CYP4F亚家族CYP4F2的调节和功能方面已发现很多,但在我们所知的领域中,CYP4F3酶的分析还是有些落后。在本篇简短综述中,重点将放在人类CYP4F3的调控和功能上。

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