Rahimtula A D, O'Brien P J
Eur J Biochem. 1977 Jul 1;77(1):201-8. doi: 10.1111/j.1432-1033.1977.tb11658.x.
The organic hydroperoxide cumene hydroperoxide is capable of oxidizing ethanol to acetaldehyde in the presence of either catalase, purified cytochrome P-450 or rat liver microsomes. Other hemoproteins like horseradish peroxidase, cytochrome c or hemoglobin were ineffective. In addition to ethanol, higher alcohols like 1-propanol, 1-butanol and 1-pentanol are also oxidized to their corresponding aldehydes to a lesser extent. Other organic hydroxyperoxides will replace cumene hydroperoxide in oxidizing ethanol but less effectively. The cumene-hydroperoxide-dependent ethanol oxidation in microsomes was inhibited partially by cytochrome P-450 inhibitors but was unaffected by catalase inhibitors. Phenobarbital pretreatment of rats increased the specific activity of the cumene-hydroperoxide-dependent ethanol oxidation per mg of microsomes about seven-fold. The evidence suggests that cytochrome P-450 rather than catalase is the enzyme responsible for hydroperoxide-dependent ethanol oxidation. However, when H2O2 is used in place of cumene hydroperoxide, the microsomal ethanol oxidation closely resembles the catalase system.
有机氢过氧化物异丙苯过氧化氢在过氧化氢酶、纯化的细胞色素P - 450或大鼠肝微粒体存在的情况下,能够将乙醇氧化为乙醛。其他血红素蛋白如辣根过氧化物酶、细胞色素c或血红蛋白则无效。除乙醇外,1 - 丙醇、1 - 丁醇和1 - 戊醇等高级醇也能在较小程度上被氧化为相应的醛。其他有机氢过氧化物在氧化乙醇时可替代异丙苯过氧化氢,但效果较差。微粒体中依赖异丙苯过氧化氢的乙醇氧化被细胞色素P - 450抑制剂部分抑制,但不受过氧化氢酶抑制剂的影响。用苯巴比妥预处理大鼠可使每毫克微粒体中依赖异丙苯过氧化氢的乙醇氧化比活性提高约7倍。证据表明,细胞色素P - 450而非过氧化氢酶是负责依赖氢过氧化物的乙醇氧化的酶。然而,当用H2O2代替异丙苯过氧化氢时,微粒体乙醇氧化与过氧化氢酶系统极为相似。