Kreuzer P E, Kessler W, Welter H F, Baur C, Filser J G
GSF-Institut für Toxikologie, Neuherberg, Federal Republic of Germany.
Arch Toxicol. 1991;65(1):59-67. doi: 10.1007/BF01973504.
Kinetics of the metabolism of 1,2-epoxybutene-3 (butadiene monoxide) were investigated in liver fractions of mouse, rat, and man. In these species similar enzyme characteristics were found. In microsomes, no NADPH-dependent metabolism of butadiene monoxide was detectable. Epoxide hydrolase activity was found only in microsomes. The Vmax [nmol butadiene monoxide/(mg protein x min)] was 19 in mouse, 17 in rat, and 14 in man and the apparent Km (mmol butadiene monoxide/l incubate) was 1.5 in mouse. 0.7 in rat, and 0.5 in man. Glutathione S-transferase activity was found in cytosol only, revealing first order kinetics in the measured range. The ratio Vmax/Km [(nmol butadiene monoxide x 1)/(mg protein x min x mmol of butadiene monoxide)] was 15 in mouse, 11 in rat, and 8 in man. The data obtained were used to extrapolate on the total rate of butadiene monoxide metabolism for each species in vivo: it was calculated to be 1.3 times higher in mice and 2.3 times lower in man compared to rats, when corrected for body weight.
对小鼠、大鼠和人类肝脏匀浆中1,2 - 环氧丁烯 - 3(丁二烯 monoxide)的代谢动力学进行了研究。在这些物种中发现了相似的酶特性。在微粒体中,未检测到丁二烯 monoxide 的NADPH 依赖性代谢。环氧水解酶活性仅在微粒体中被发现。小鼠的Vmax [nmol 丁二烯 monoxide /(mg 蛋白质×分钟)]为19,大鼠为17,人类为14,表观Km(mmol 丁二烯 monoxide / l 孵育液)在小鼠中为1.5,大鼠中为0.7,人类中为0.5。谷胱甘肽S - 转移酶活性仅在胞质溶胶中被发现,在所测范围内呈一级动力学。Vmax / Km [(nmol 丁二烯 monoxide×1)/(mg 蛋白质×分钟×mmol 丁二烯 monoxide)]的比值在小鼠中为15,大鼠中为11,人类中为8。所获得的数据被用于推断每种物种体内丁二烯 monoxide 的总代谢速率:经体重校正后,计算得出小鼠的代谢速率比大鼠高1.3倍,人类比大鼠低2.3倍。