Sumimoto H, Kusunose E, Gotoh Y, Kusunose M, Minakami S
Department of Biochemistry, Kyushu University School of Medicine, Fukuoka.
J Biochem. 1990 Aug;108(2):215-21. doi: 10.1093/oxfordjournals.jbchem.a123183.
The omega-hydroxylation of leukotriene B4 (LTB4) by rat liver microsomes requires NADPH and molecular oxygen, suggesting that the hydroxylation is catalyzed by a cytochrome P-450 (P-450)-linked monooxygenase system. The reaction is inhibited by CO, and the inhibition is reversed by irradiation of light at 450 nm in a light-intensity-dependent manner. The extent of the reversal is strongly dependent on the wavelength of the light used, the 450-nm light is most efficient. The finding provides direct evidence for the identification of the LTB4 omega-hydroxylase as a P-450. The P-450 seems to be also responsible for prostaglandin A1 (PGA1) omega-hydroxylation, but not for lauric acid omega-hydroxylation. The LTB4 omega-hydroxylation is competitively inhibited by PGA1, but not affected by lauric acid. The Ki value for PGA1 of 38 microM agrees with the Km value for PGA1 omega-hydroxylation of 40 microM. LTB4 inhibits the PGA1 omega-hydroxylation by rat liver microsomes in a competitive manner with the Ki of 43 microM, which is consistent with the Km for the LTB4 omega-hydroxylation of 42 microM. An antiserum raised against rabbit pulmonary PG omega-hydroxylase (P-450p-2) inhibits slightly the omega-hydroxylations of LTB4 and PGA1, while it has stronger inhibitory effect on lauric acid omega-hydroxylation. In addition to NADPH-cytochrome P-450 reductase, cytochrome b5 appears to participate in the LTB4 omega-hydroxylating system, since the reaction is inhibited by an antibody raised against the cytochrome b5 as well as one raised against the reductase.
大鼠肝脏微粒体对白三烯B4(LTB4)的ω-羟基化作用需要NADPH和分子氧,这表明该羟基化反应是由细胞色素P-450(P-450)相关的单加氧酶系统催化的。该反应受CO抑制,且通过450 nm光照以光强度依赖的方式逆转这种抑制作用。逆转程度强烈依赖于所用光的波长,450 nm光最为有效。这一发现为将LTB4 ω-羟化酶鉴定为P-450提供了直接证据。该P-450似乎也负责前列腺素A1(PGA1)的ω-羟基化作用,但不负责月桂酸的ω-羟基化作用。LTB4的ω-羟基化作用受到PGA1的竞争性抑制,但不受月桂酸影响。PGA1的Ki值为38 μM,与PGA1 ω-羟基化作用的Km值40 μM一致。LTB4以竞争性方式抑制大鼠肝脏微粒体对PGA1的ω-羟基化作用,Ki为43 μM,这与LTB4 ω-羟基化作用的Km值42 μM一致。针对兔肺PG ω-羟化酶(P-450p-2)产生的抗血清对LTB4和PGA1的ω-羟基化作用有轻微抑制,而对月桂酸ω-羟基化作用有更强的抑制作用。除了NADPH-细胞色素P-450还原酶外,细胞色素b5似乎也参与LTB4 ω-羟基化系统,因为该反应受到针对细胞色素b5以及针对还原酶产生的抗体的抑制。