Fujino T, Matsuyama A, Nagao M, Sugimura T
Chem Biol Interact. 1980 Oct;32(1-2):1-12. doi: 10.1016/0009-2797(80)90064-2.
The effect of norharman on the metabolism of ethyl acetate-soluble metabolic intermediates of benzo[a]pyrene (BP), 9,10-dihydro-9,10-dihydroxybenzo[a]pyrene (9,10-diol), 4,5-dihydro-4,5-dihydroxybenzo[a]pyrene (4,5-diol), 7,8-dihydro-7,8-dihydroxybenzo[a]pyrene (7,8-diol), benzo[a]pyrene diones, 3-hydroxybenzo[a]pyrene (3-OH-BP) and 9-hydroxybenzo[a]pyrene (9-OH-BP), were studied. These metabolic intermediates were converted by microsomal enzymes to other more polar ethyl acetate-soluble metabolites and then finally to the water-soluble metabolites. Norharman inhibited markedly the disappearance of each metabolite added as a substrate. With high-pressure liquid chromatographic (HPLC) separation it was revealed that formation of more polar metabolite was more efficiently inhibited by norharman than the formation of less polar metabolite. Formation of water-soluble metabolite was most efficiently inhibited by norharman. The mechanisms of the inhibitory effect of norharman on BP metabolism were studied by difference spectroscopy. On the addition of norharman, microsomes showed a type II difference spectrum, while on the addition of BP, they showed a type I difference spectrum. 3-OH-BP and 4,5-diol also gave a type I spectrum. Thus both BP and its metabolites bind to the active center of P-450, whereas norharman binds to the sixth ligand position of the iron ion of P-450. Kinetic studies showed that the Km-value of microsomes for BP was 6.25 microM in the presence and absence of norharman. This indicated that norharman inhibits the metabolism of BP non-competitively.
研究了去甲哈尔满对苯并[a]芘(BP)、9,10-二氢-9,10-二羟基苯并[a]芘(9,10-二醇)、4,5-二氢-4,5-二羟基苯并[a]芘(4,5-二醇)、7,8-二氢-7,8-二羟基苯并[a]芘(7,8-二醇)、苯并[a]芘二酮、3-羟基苯并[a]芘(3-OH-BP)和9-羟基苯并[a]芘(9-OH-BP)的乙酸乙酯可溶性代谢中间体代谢的影响。这些代谢中间体被微粒体酶转化为其他极性更强的乙酸乙酯可溶性代谢物,最终转化为水溶性代谢物。去甲哈尔满显著抑制了作为底物添加的每种代谢物的消失。通过高压液相色谱(HPLC)分离发现,去甲哈尔满对极性更强的代谢物形成的抑制作用比对极性较弱的代谢物形成的抑制作用更有效。去甲哈尔满对水溶性代谢物的形成抑制作用最为有效。通过差示光谱法研究了去甲哈尔满对BP代谢抑制作用的机制。添加去甲哈尔满时,微粒体呈现II型差示光谱,而添加BP时,呈现I型差示光谱。3-OH-BP和4,5-二醇也呈现I型光谱。因此,BP及其代谢物均与P-450的活性中心结合,而去甲哈尔满与P-450铁离子的第六个配体位置结合。动力学研究表明,在有和没有去甲哈尔满的情况下,微粒体对BP的Km值均为6.25 microM。这表明去甲哈尔满对BP代谢的抑制作用是非竞争性的。