Amunom Immaculate, Stephens Laura J, Tamasi Viola, Cai Jian, Pierce William M, Conklin Daniel J, Bhatnagar Aruni, Srivastava S, Martin Martha V, Guengerich F Peter, Prough Russell A
Department of Biochemistry and Molecular Biology, University of Louisville School of Medicine, Louisville, KY 40292, USA.
Arch Biochem Biophys. 2007 Aug 15;464(2):187-96. doi: 10.1016/j.abb.2007.05.019. Epub 2007 Jun 8.
We sought to establish whether heme-thiolate monooxygenases oxidize, alpha,beta-unsaturated aldehydes generated during lipid peroxidation. Several recombinant P450s co-expressed with NADPH:P450 oxidoreductase were surveyed for aldehyde oxidation activity with anthracene-9-carboxaldehyde and 4-hydroxy-trans-2-nonenal (HNE). Murine P4502c29, human P4503A4, human P4502B6, and rabbit P4502B4 were good catalysts of aldehyde oxidation to carboxylic acids. Other P450s (e.g., P4501A2, 2E1, and 2J2) did not oxidize these aldehydes. P4502c29 and P4503A4 displayed K(m)/S(0.5) values of approx. 1-20microM. The product measured by HPLC that co-migrates with authentic 4-hydroxynonenoic acid (HNA) had a mass spectrum identical to the standard. Using P4502c29, HNE was a mixed-competitive inhibitor of anthracene-9-carboxaldehyde oxidation, suggesting that both aldehydes are substrates for P4502c29. Specific inhibitors of aldehyde dehydrogenases and P450 were used to assess their role in the metabolism of HNE in primary rat hepatocytes. Inhibitors of aldehyde dehydrogenase (cyanamide) inhibited HNA formation by 60% and together cyanamide and miconazole (P450) caused over 85% inhibition of HNA formation. P450s are significant participants in metabolism of endogenous and exogenous unsaturated aldehydes in primary rat hepatocytes.
我们试图确定血红素硫醇盐单加氧酶是否会氧化脂质过氧化过程中产生的α,β-不饱和醛。我们检测了几种与NADPH:P450氧化还原酶共表达的重组P450对蒽-9-甲醛和4-羟基反式-2-壬烯醛(HNE)的醛氧化活性。小鼠P4502c29、人P4503A4、人P4502B6和兔P4502B4是将醛氧化为羧酸的良好催化剂。其他P450(如P4501A2、2E1和2J2)不会氧化这些醛。P4502c29和P4503A4的K(m)/S(0.5)值约为1-20微摩尔。通过HPLC测定的与真实4-羟基壬烯酸(HNA)共迁移的产物,其质谱与标准品相同。使用P4502c29时,HNE是蒽-9-甲醛氧化的混合竞争性抑制剂,这表明两种醛都是P4502c29的底物。醛脱氢酶和P450的特异性抑制剂被用于评估它们在原代大鼠肝细胞中HNE代谢中的作用。醛脱氢酶抑制剂(氰胺)使HNA的形成受到60%的抑制,氰胺和咪康唑(P450抑制剂)共同作用使HNA的形成受到超过85%的抑制。P450是原代大鼠肝细胞中内源性和外源性不饱和醛代谢的重要参与者。