Sariaslani F S, Westwood A W, Higgins I J
J Gen Microbiol. 1975 Dec;91(2):315-24. doi: 10.1099/00221287-91-2-315.
Nocardia salmonicolor, grown on acetate, commercial D,L-lactate or hydrocarbon substrates, has high isocitrate lyase activities compared with those resulting from growth on other carbon sources. This presumably reflects the anaplerotic role of the glyoxylate cycle during growth on the former substrates. Amongst a variety of compounds tested, including glucose, pyruvate and tricarboxylic acid cycle intermediates, only succinate and fumarate prevented an increase in enzyme activity in the presence of acetate. When acetate (equimolar to the initial sugar concentration) was added to cultures growing on glucose, there followed de novo synthesis of isocitrated lyase and isocitrate dehydrogenase, with increases in growth rate and glucose utilization, and both acetate and glucose were metabolized simultaneously. A minute amount of acetate (40 muM) caused isocitrate lyase synthesis (a three-fold increase in activity within 3 min of addition) when added to glucose-limited continuous cultures, but even large amounts added to nitrogen-limited batch cultures were ineffective. Malonate, at a concentration that was not totally growth-inhibitory (1mM) prevented the inhibition of acetate-stimulated isocitrate lyase synthesis by succinate, but fumarate still inhibited in the presence of malonate. Phosphoenolpyruvate is a non-competitive inhibitor of the enzyme (apparent Ki 1-7 mM). The results are consistent with the induction of isocitrate or a closely related metabolite, and catabolite repression by a C-4 acid of the tricarboxylic acid cycle, possibly fumarate.
与在其他碳源上生长相比,在醋酸盐、市售D,L-乳酸盐或烃类底物上生长的鲑色诺卡氏菌具有较高的异柠檬酸裂解酶活性。这大概反映了乙醛酸循环在前述底物生长过程中的回补作用。在测试的多种化合物中,包括葡萄糖、丙酮酸和三羧酸循环中间体,只有琥珀酸和富马酸在有醋酸盐存在时能阻止酶活性的增加。当将醋酸盐(与初始糖浓度等摩尔)添加到在葡萄糖上生长的培养物中时,异柠檬酸裂解酶和异柠檬酸脱氢酶会重新合成,生长速率和葡萄糖利用率增加,并且醋酸盐和葡萄糖会同时被代谢。当向葡萄糖限制的连续培养物中添加微量醋酸盐(40μM)时,会导致异柠檬酸裂解酶合成(添加后3分钟内活性增加三倍),但即使向氮限制的分批培养物中添加大量醋酸盐也无效。丙二酸在并非完全抑制生长的浓度(1mM)下可阻止琥珀酸对醋酸盐刺激的异柠檬酸裂解酶合成的抑制,但在有丙二酸存在时富马酸仍有抑制作用。磷酸烯醇丙酮酸是该酶的非竞争性抑制剂(表观Ki为1 - 7mM)。结果与异柠檬酸或密切相关代谢物的诱导以及三羧酸循环中C-4酸(可能是富马酸)的分解代谢阻遏一致。