Kawaguchi A, Tomoda H, Nozoe S, Omura S, Okuda S
J Biochem. 1982 Jul;92(1):7-12. doi: 10.1093/oxfordjournals.jbchem.a133933.
Cerulenin, an antibiotic with the structure of (2R)(3S)-2,3-epoxy-4-oxo-7,10-dodecadienoylamide, irreversibly inactivates yeast fatty acid synthetase. Of all catalytic activities of the synthetase, only the condensation reaction is inhibited by cerulenin. At 0 degrees C and pH 6.5, the second-order rate constant of k = 88 M-1 . S-1 was obtained for the inactivation by cerulenin. This value was about 90-times greater than the rate constant for the inactivation of the enzyme by iodoacetamide. The enzyme was protected against the action of cerulenin by prior treatment with acetyl-CoA but not malonyl-CoA. Treatment of the enzyme with iodoacetamide, while impairing the synthetase activity, induced malonyl-CoA decarboxylase activity [Kresze, G.-B., Steber, L., Oesterhelt, D., and Lynen, F. (1977) Eur. J. Biochem. 79, 191-199]. Cerulenin had no effect on the malonyl-CoA decarboxylase activity of the iodoacetamide-treated enzyme. N-Ethylmaleimide, in contrast, inhibited the iodoacetamide-induced malonyl-CoA decarboxylase activity. When the enzyme was preincubated with cerulenin, malonyl-CoA decarboxylase activity could not be detected even after treatment of the enzyme with iodoacetamide. These results indicated that the reaction of cerulenin with the peripheral SH-groups of the synthetase is responsible for the inactivation.
浅蓝菌素是一种具有(2R)(3S)-2,3-环氧-4-氧代-7,10-十二碳二烯酰胺结构的抗生素,它能不可逆地使酵母脂肪酸合成酶失活。在合成酶的所有催化活性中,只有缩合反应受到浅蓝菌素的抑制。在0℃和pH 6.5条件下,浅蓝菌素使酶失活的二级速率常数k = 88 M-1·s-1。该值比碘乙酰胺使酶失活的速率常数大约大90倍。预先用乙酰辅酶A处理可保护酶免受浅蓝菌素的作用,但丙二酸单酰辅酶A则不能。用碘乙酰胺处理酶,在损害合成酶活性的同时,诱导了丙二酸单酰辅酶A脱羧酶活性[克雷斯泽,G.-B.,施泰伯,L.,奥斯特黑尔特,D.,和林嫩,F.(1977年)《欧洲生物化学杂志》79卷,191 - 199页]。浅蓝菌素对经碘乙酰胺处理的酶的丙二酸单酰辅酶A脱羧酶活性没有影响。相比之下,N-乙基马来酰亚胺抑制碘乙酰胺诱导的丙二酸单酰辅酶A脱羧酶活性。当酶与浅蓝菌素预孵育时,即使在用碘乙酰胺处理酶后也检测不到丙二酸单酰辅酶A脱羧酶活性。这些结果表明,浅蓝菌素与合成酶外周巯基的反应是导致酶失活的原因。