Yoshimoto T, Soberman R J, Spur B, Austen K F
Department of Medicine, Harvard Medical School, Boston, Massachusetts 02115.
J Clin Invest. 1988 Mar;81(3):866-71. doi: 10.1172/JCI113396.
Leukotriene C4 (LTC4) synthase, which conjugates LTA4 and LTA4-methyl ester (LTA4-me) with glutathione (GSH) to form LTC4 and LTC4-me, respectively, has been solubilized from the microsomes of guinea pig lung and purified 91-fold in four steps to a specific activity of 692 nmol/10 min per mg protein using LTA4-me as substrate. LTC4 synthase of guinea pig lung was separated from microsomal GSH S-transferase by Sepharose CL-4B chromatography and further purified by DEAE-Sephacel chromatography, agarose-butylamine chromatography, and DEAE-3SW fast-protein liquid chromatography. It was also differentiated from the microsomal GSH S-transferase, which utilized 1-chloro-2,4-dinitrobenzene as a substrate, by its heat lability and relative resistance to inhibition by S-hexyl-GSH. The Km value of guinea pig lung LTC4 synthase for LTA4 was 3 microM and the Vmax was 108 nmol/3 min per microgram; the Km values for LTA3 and LTA5 were similar, and the Vmax values were about one-half those obtained with LTA4. The conversion of LTA4-me to LTC4-me was competitively inhibited by LTA3, LTA4, and LTA5, with respective Ki values of 1.5, 3.3, and 2.8 microM, suggesting that these substrates were recognized by a common active site. IC50 values for the inhibition of the conjugation of 20 microM LTA4-me with 5 mM GSH were 2.1 microM and 0.3 microM for LTC4 and LTC3, respectively. In contrast, LTD4 was substantially less inhibitory (IC50 greater than 40 microM), and LTE4 and LTB4 had no effect on the enzyme, indicating that the mixed type product inhibition observed was specific for sulfidopeptide leukotrienes bearing the GSH moiety.
白三烯C4(LTC4)合酶可分别将白三烯A4(LTA4)和白三烯A4甲酯(LTA4-me)与谷胱甘肽(GSH)结合,形成LTC4和LTC4-me。该酶已从豚鼠肺微粒体中溶解出来,并以LTA4-me为底物,通过四个步骤纯化了91倍,达到每毫克蛋白质692 nmol/10分钟的比活性。豚鼠肺LTC4合酶通过琼脂糖凝胶CL-4B柱层析与微粒体谷胱甘肽S-转移酶分离,并进一步通过DEAE-琼脂糖凝胶柱层析、琼脂糖-丁胺柱层析和DEAE-3SW快速蛋白质液相层析进行纯化。它还因其热不稳定性和对S-己基-GSH抑制的相对抗性,与以1-氯-2,4-二硝基苯为底物的微粒体谷胱甘肽S-转移酶相区别。豚鼠肺LTC4合酶对LTA4的Km值为3 μM,Vmax为每微克108 nmol/3分钟;对LTA3和LTA5的Km值相似,Vmax值约为LTA4的一半。LTA4-me向LTC4-me的转化受到LTA3、LTA4和LTA5的竞争性抑制,其Ki值分别为1.5、3.3和2.8 μM,表明这些底物由一个共同的活性位点识别。对于20 μM LTA4-me与5 mM GSH结合的抑制作用,LTC4和LTC3的IC50值分别为2.1 μM和0.3 μM。相比之下,LTD4的抑制作用要小得多(IC50大于40 μM),而LTE4和LTB4对该酶没有影响,这表明观察到的混合型产物抑制对白三烯部分带有GSH的硫醚肽白三烯具有特异性。