Intrinsic hepatic phenotype associated with the Cyp1a2 gene as shown by cDNA expression microarray analysis of the knockout mouse.

Andrew G Smith, Reginald Davies, Timothy P Dalton, Marian L Miller, David Judah, Joan Riley, Timothy Gant, Daniel W Nebert
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Abstract

Several forms of cytochrome P450 (CYP) appear to metabolize principally pharmaceutical agents, as well as other dietary and plant chemicals. Other CYP forms have major roles in steroid, sterol, and bile acid metabolism. CYP1A2 expression is constitutively high in mouse liver and is well known for metabolizing several drugs and many procarcinogens to reactive intermediates that can cause toxicity or cancer. CYP1A2 is also known to carry out several endogenous functions such as uroporphyrinogen and melatonin oxidation and the 2- and 4-hydroxylations of estradiol. We have used cDNA microarray analysis of the untreated Cyp1a2(-/-) knockout mouse to search for changes in gene expression that might indicate important intrinsic roles for this enzyme. For 15 of the up- or downregulated genes, these increases or decreases were corroborated by reverse-transcription real-time polymerase chain reaction. Other than upregulation of the Hprt gene (used in the selection procedure for disrupting the Cyp1a2 gene), we found several genes upregulated that are associated with cell-cycle regulation and lipid metabolism. Besides Cyp1a2, the gene exhibiting the greatest downregulation was Igfbp1 (insulin-like growth factor binding protein-1), showing only 12% expression of that in the Cyp1a2(+/+) wild-type liver. Recurrent themes between both up- and downregulated genes include cell-cycle control, insulin action, lipogenesis, and fatty acid and cholesterol biosynthetic pathways. Histologically, the Cyp1a2(-/-) mouse exhibited an approximately 50% decrease in lipid stored in hepatocytes, and 50% increase in lipid present in interstitial fat-storing cells compared with that in the Cyp1a2(+/+) wild-type. These data suggest that the CYP1A2 enzyme might perform additional hepatic endogenous functions heretofore not appreciated.

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基因敲除小鼠的cDNA表达芯片分析显示与Cyp1a2基因相关的内在肝脏表型。
几种形式的细胞色素P450 (CYP)似乎主要代谢药物,以及其他膳食和植物化学物质。其他形式的CYP在类固醇、固醇和胆汁酸代谢中起主要作用。在小鼠肝脏中,CYP1A2的表达量是组成性高的,众所周知,CYP1A2可以将几种药物和许多前致癌物代谢为可引起毒性或癌症的活性中间体。CYP1A2还具有多种内源性功能,如氧化尿卟啉原和褪黑素,以及雌二醇的2-羟基化和4-羟基化。我们对未经处理的Cyp1a2(-/-)敲除小鼠进行了cDNA微阵列分析,以寻找可能表明该酶重要内在作用的基因表达变化。对于15个上调或下调的基因,逆转录实时聚合酶链反应证实了这些增加或减少。除了Hprt基因上调(用于破坏Cyp1a2基因的选择过程),我们还发现了几个与细胞周期调节和脂质代谢相关的基因上调。除Cyp1a2外,下调幅度最大的基因是Igfbp1(胰岛素样生长因子结合蛋白-1),在Cyp1a2(+/+)野生型肝脏中表达量仅为其12%。在上调和下调基因之间反复出现的主题包括细胞周期控制、胰岛素作用、脂肪生成、脂肪酸和胆固醇生物合成途径。组织学上,与Cyp1a2(+/+)野生型相比,Cyp1a2(-/-)小鼠肝细胞中储存的脂质减少了约50%,而间质脂肪储存细胞中的脂质增加了50%。这些数据表明,CYP1A2酶可能具有其他的肝脏内源性功能,迄今为止尚未被认识到。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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EHP Toxicogenomics: a publication forum in the postgenome era. The new biology. HapMap: building a database with blocks. National Center for Toxicogenomics: an introduction. Toxicogenomics. An emerging discipline.
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