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阿西维辛在体内对肝癌中CTP合成酶、氨甲酰磷酸合成酶II和氨甲酰磷酸核糖基转移酶的快速灭活作用。

Rapid in vivo inactivation by acivicin of CTP synthetase, carbamoyl-phosphate synthetase II, and amidophosphoribosyltransferase in hepatoma.

作者信息

Denton J E, Lui M S, Aoki T, Sebolt J, Weber G

出版信息

Life Sci. 1982 Mar 29;30(13):1073-80. doi: 10.1016/0024-3205(82)90527-6.

Abstract

A single injection of the anti-glutamine drug, acivicin (NSC 163501), in tumor-bearing rats in 30 min decreased the activities of amidophosphoribosyltransferase, carbamoyl-phosphate synthetase II and CTP synthetase to 56, 50, and 7% of those of the controls. By 1 hr the activities were down to 32, 13 and 3% and they remained low for 12 hr, after which they slowly returned towards normal range in 72 hr. The decline of the activity of CTP synthetase (a loss of 80% in 10 min) was the most rapid, and the activity only returned to 60% of the controls by 3 days after the acivicin injection. In the hepatoma the concentrations of ATP and UTP changed little, but those of GTP and CTP rapidly decreased, reaching at the lowest point 32 and 2%, respectively, of control values 2 hr after acivicin; concentrations started to rise at 12 hr, reaching normal levels by 48 hr. The drop in enzyme activities preceded the decline in the pools of GTP and CTP. The behavior of enzyme activities and nucleotide concentrations in the host liver had a pattern similar to that in the hepatoma; however, the changes were less extensive than those in the tumor. The differential response between tumor and liver is attributed, in part at least, to the tissue L-glutamine concentration which in the hepatoma (0.5 mM) was 9 times lower than in the liver (4.5mM). The selectivity of acivicin action in inhibiting glutamine-utilizing enzymes is also demonstrated by the lack of effect on aspartate carbamoyltransferase, an enzymic activity which resides in the same complex as that of carbamoyl-phosphate synthetase II. The rapid decline in the activities of glutamine-utilizing enzymes is attributed to an inactivation of the enzymes by acivicin which functions as an active sitedirected affinity analog of L-glutamine. The rapid modulation of the enzymic phenotype and ribonucleotide concentrations by acivicin provides a useful tool for elucidating the role of enzymic and nucleotide imbalance in the commitment of cancer cells to replication and in the targeting of anticancer chemotherapy.

摘要

给荷瘤大鼠单次注射抗谷氨酰胺药物阿西维辛(NSC 163501),30分钟后,氨甲酰磷酸核糖基转移酶、氨甲酰磷酸合成酶II和CTP合成酶的活性降至对照组的56%、50%和7%。1小时后,这些活性分别降至32%、13%和3%,并在12小时内保持较低水平,之后在72小时内缓慢恢复至正常范围。CTP合成酶活性下降最快(10分钟内丧失80%),阿西维辛注射3天后,其活性才恢复至对照组的60%。在肝癌中,ATP和UTP的浓度变化不大,但GTP和CTP的浓度迅速下降,阿西维辛注射2小时后分别降至对照值的32%和2%的最低点;浓度在12小时开始上升,48小时达到正常水平。酶活性的下降先于GTP和CTP池的下降。宿主肝脏中酶活性和核苷酸浓度的变化模式与肝癌中的相似;然而,变化程度不如肿瘤中的广泛。肿瘤和肝脏之间的差异反应至少部分归因于组织L-谷氨酰胺浓度,肝癌中的浓度(0.5 mM)比肝脏中的(4.5 mM)低9倍。阿西维辛对天冬氨酸氨甲酰转移酶没有影响,也证明了其在抑制谷氨酰胺利用酶方面作用的选择性,天冬氨酸氨甲酰转移酶与氨甲酰磷酸合成酶II存在于同一复合物中。谷氨酰胺利用酶活性的快速下降归因于阿西维辛使酶失活,阿西维辛作为L-谷氨酰胺的活性位点定向亲和类似物发挥作用。阿西维辛对酶表型和核糖核苷酸浓度的快速调节为阐明酶和核苷酸失衡在癌细胞复制过程中的作用以及抗癌化疗的靶向作用提供了一个有用的工具。

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