Vasiliou V, Reuter S F, Nebert D W
Center for Environmental Genetics, University of Cincinnati Medical Center, Ohio 45267-0056, USA.
Biochem Biophys Res Commun. 1997 Apr 28;233(3):631-6. doi: 10.1006/bbrc.1997.6384.
Oxidative stress-induced gene expression in liver of the untreated newborn c14CoS/c14CoS mouse, as compared with that in the cch/cch wild-type mouse, appears to be caused by homozygous loss of the fumarylacetoacetate hydrolase (Fah) gene on Chr 7 and absence of the FAH enzyme, which leads to increased levels of endogenous reactive oxygenated metabolites (ROMs) formed in the tyrosine degradative pathway. In these mice almost all studies to date have been carried out in liver. We have examined the extrahepatic expression of four genes. Two genes are members of the [Ah] battery and induced by ROM-mediated oxidative stress: NAD(P)H:menadione oxidoreductase (Nmo1) and UDP glucuronosyltransferase-1A6 (Ugt1a6). The other two genes are decreased in the livers of 14CoS/ 14CoS mice as compared with that in ch/ch mice: microsomal aldehyde dehydrogenase (Ahd3) and hepatocyte-specific nuclear factor-1 alpha HNF-1 alpha (Hnf1 alpha). In liver plus nine extrahepatic tissues of untreated newborn 14CoS/14CoS mutant and ch/ch wild-type mice, we compared NMO1, UGT1A6, AHD3 and HNF-1 alpha mRNA levels. Our results show a wide variation in extrahepatic tissue-specific expression of all four transcripts and indicate that numerous differences exist in the extrahepatic expression of these genes between 14CoS/14CoS and ch/ch mice.
与cch/cch野生型小鼠相比,未处理的新生c14CoS/c14CoS小鼠肝脏中氧化应激诱导的基因表达,似乎是由7号染色体上富马酰乙酰乙酸水解酶(Fah)基因的纯合缺失以及FAH酶的缺失引起的,这导致酪氨酸降解途径中内源性活性氧化代谢物(ROMs)水平升高。在这些小鼠中,迄今为止几乎所有研究都是在肝脏中进行的。我们检测了四个基因的肝外表达。两个基因是[Ah]基因家族的成员,由ROM介导的氧化应激诱导:NAD(P)H:甲萘醌氧化还原酶(Nmo1)和UDP葡萄糖醛酸基转移酶-1A6(Ugt1a6)。与ch/ch小鼠相比,另外两个基因在14CoS/14CoS小鼠肝脏中的表达降低:微粒体醛脱氢酶(Ahd3)和肝细胞特异性核因子-1α(HNF-1α)。在未处理的新生14CoS/14CoS突变小鼠和ch/ch野生型小鼠的肝脏加九个肝外组织中,我们比较了NMO1、UGT1A6、AHD3和HNF-1α的mRNA水平。我们的结果显示,所有四种转录本在肝外组织特异性表达上存在很大差异,表明14CoS/14CoS小鼠和ch/ch小鼠在这些基因的肝外表达上存在许多差异。