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噻唑呋林(2-β-D-呋喃核糖基噻唑-4-甲酰胺)对肌苷酸脱氢酶活性和鸟苷酸代谢的调节作用

Modulation of IMP dehydrogenase activity and guanylate metabolism by tiazofurin (2-beta-D-ribofuranosylthiazole-4-carboxamide).

作者信息

Lui M S, Faderan M A, Liepnieks J J, Natsumeda Y, Olah E, Jayaram H N, Weber G

出版信息

J Biol Chem. 1984 Apr 25;259(8):5078-82.

PMID:6143752
Abstract

Tiazofurin, a C-nucleoside, was cytotoxic in hepatoma 3924A cells grown in culture with an LC50 = 7.5 microM. In the culture, a closely linked dose-related response of tumor cell-kill and depletion of GTP pools was observed after tiazofurin treatment. In rats carrying subcutaneously transplanted hepatoma 3924A solid tumors, a single intraperitoneal injection of tiazofurin (200 mg/kg) caused a rapid inhibition of IMP dehydrogenase (EC 1.2.1.14) activity and depleted GDP, GTP, and dGTP pools in the tumor; concurrently, the 5-phosphoribosyl 1-pyrophosphate (PRPP) and IMP pools expanded 8- and 15-fold, respectively. Tiazofurin decreased tumoral IMP dehydrogenase activity and dGTP pools in a dose-dependent manner over a range of 50-200 mg/kg; by contrast, the depletion of GTP and the accumulation of IMP and PRPP pools were near maximum at 50 mg/kg. The increase in PRPP pools may be attributed to an inhibition by IMP of the activity of hypoxanthine-guanine phosphoribosyltransferase (EC 2.4.2.8). The IMP dehydrogenase activity and the pools of ribonucleotides returned to the normal range by 24-48 h after the single injection of tiazofurin. However, the markedly depleted dGTP pools remained low for 72 h. Tiazofurin treatment resulted in significant anti-tumor activity in rats inoculated with hepatoma 3924A. The decrease in GTP levels and particularly the sustained depletion in the dGTP pools may explain, in part at least, the chemo-therapeutic action of tiazofurin on hepatoma 3924A. This is the first report showing that a marked therapeutic response was achieved against rapidly growing hepatoma 3924A by treatment with a single anti-metabolite.

摘要

硫唑嘌呤,一种C -核苷,对培养的肝癌3924A细胞具有细胞毒性,其半数致死浓度(LC50)= 7.5微摩尔。在培养物中,硫唑嘌呤处理后观察到肿瘤细胞杀伤与GTP池消耗之间存在密切相关的剂量反应。在皮下移植有肝癌3924A实体瘤的大鼠中,单次腹腔注射硫唑嘌呤(200毫克/千克)可迅速抑制肌苷酸脱氢酶(EC 1.2.1.14)活性,并使肿瘤中的GDP、GTP和dGTP池减少;同时,5 -磷酸核糖-1 -焦磷酸(PRPP)和肌苷酸(IMP)池分别扩大了8倍和15倍。在50 - 200毫克/千克范围内,硫唑嘌呤以剂量依赖性方式降低肿瘤肌苷酸脱氢酶活性和dGTP池;相比之下,GTP的消耗以及IMP和PRPP池的积累在50毫克/千克时接近最大值。PRPP池的增加可能归因于IMP对次黄嘌呤-鸟嘌呤磷酸核糖转移酶(EC 2.4.2.8)活性的抑制。单次注射硫唑嘌呤后24 - 48小时,肌苷酸脱氢酶活性和核糖核苷酸池恢复到正常范围。然而,显著减少的dGTP池在72小时内仍保持较低水平。硫唑嘌呤治疗对接种肝癌3924A的大鼠具有显著的抗肿瘤活性。GTP水平的降低,尤其是dGTP池的持续消耗,至少部分地解释了硫唑嘌呤对肝癌3924A的化疗作用。这是第一份表明用单一抗代谢物治疗可对快速生长的肝癌3924A取得显著治疗反应的报告。

相似文献

1
Modulation of IMP dehydrogenase activity and guanylate metabolism by tiazofurin (2-beta-D-ribofuranosylthiazole-4-carboxamide).噻唑呋林(2-β-D-呋喃核糖基噻唑-4-甲酰胺)对肌苷酸脱氢酶活性和鸟苷酸代谢的调节作用
J Biol Chem. 1984 Apr 25;259(8):5078-82.
2
Targets and markers of selective action of tiazofurin.噻唑呋林的选择性作用靶点和标志物。
Adv Enzyme Regul. 1985;24:45-65. doi: 10.1016/0065-2571(85)90069-x.
3
Control of enzymic programs and nucleotide pattern in cancer cells by acivicin and tiazofurin.阿西维辛和替唑呋林对癌细胞中酶程序和核苷酸模式的调控
Adv Enzyme Regul. 1984;22:69-93. doi: 10.1016/0065-2571(84)90009-8.
4
Mechanism of resistance to tiazofurin in hepatoma 3924A.
Biochem Pharmacol. 1986 Feb 15;35(4):587-93. doi: 10.1016/0006-2952(86)90352-7.
5
Enzyme-pattern-targeted chemotherapy with tiazofurin and allopurinol in human leukemia.在人类白血病中使用替唑呋林和别嘌呤醇进行酶模式靶向化疗。
Adv Enzyme Regul. 1988;27:405-33. doi: 10.1016/0065-2571(88)90029-5.
6
Effects of tiazofurin on guanine nucleotide binding regulatory proteins in HL-60 cells.
Blood. 1990 Feb 1;75(3):583-8.
7
Biochemical differences among four inosinate dehydrogenase inhibitors, mycophenolic acid, ribavirin, tiazofurin, and selenazofurin, studied in mouse lymphoma cell culture.在小鼠淋巴瘤细胞培养中对四种肌苷酸脱氢酶抑制剂(霉酚酸、利巴韦林、噻唑呋林和硒唑呋林)的生化差异进行了研究。
Cancer Res. 1985 Nov;45(11 Pt 1):5512-20.
8
Effects of the inhibitors of IMP dehydrogenase, tiazofurin and mycophenolic acid, on glycoprotein metabolism.肌苷酸脱氢酶抑制剂噻唑呋林和霉酚酸对糖蛋白代谢的影响。
Mol Pharmacol. 1985 Dec;28(6):567-73.
9
Biochemical mechanisms of resistance to tiazofurin.
Adv Enzyme Regul. 1985;24:67-89. doi: 10.1016/0065-2571(85)90070-6.
10
Biochemically directed therapy of leukemia with tiazofurin, a selective blocker of inosine 5'-phosphate dehydrogenase activity.采用替唑呋林(一种肌苷5'-磷酸脱氢酶活性的选择性阻滞剂)对白血病进行生化导向治疗。
Cancer Res. 1989 Jul 1;49(13):3696-701.

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Anti-Tumor Potential of IMP Dehydrogenase Inhibitors: A Century-Long Story.
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Inosine-5'-monophosphate dehydrogenase is a rate-determining factor for p53-dependent growth regulation.肌苷-5'-单磷酸脱氢酶是p53依赖性生长调节的一个速率决定因素。
Mol Biol Cell. 1998 Jan;9(1):15-28. doi: 10.1091/mbc.9.1.15.
5
Small elevations of glucose concentration redirect and amplify the synthesis of guanosine 5'-triphosphate in rat islets.葡萄糖浓度的小幅升高会改变并增强大鼠胰岛中三磷酸鸟苷的合成。
J Clin Invest. 1993 Aug;92(2):872-82. doi: 10.1172/JCI116662.
6
Role of differentiation induction in action of purine antimetabolites.分化诱导在嘌呤抗代谢物作用中的作用。
Pharm World Sci. 1994 Apr 15;16(2):77-83. doi: 10.1007/BF01880659.
7
Physiological concentrations of purines and pyrimidines.嘌呤和嘧啶的生理浓度。
Mol Cell Biochem. 1994 Nov 9;140(1):1-22. doi: 10.1007/BF00928361.
8
Phase I and pharmacokinetic study of tiazofurin (TCAR, NSC 286193) administered by continuous infusion.
Invest New Drugs. 1985;3(4):349-55. doi: 10.1007/BF00170757.
9
Clinical pharmacology of tiazofurin (2-beta-D-ribofuranosylthiazole-4-carboxamide, NSC 286193).
Invest New Drugs. 1986;4(4):387-94. doi: 10.1007/BF00173513.
10
Studies of purine and tiazofurin metabolism in drug sensitive human chronic myelogenous leukemia K 562 cells.药物敏感的人慢性髓性白血病K562细胞中嘌呤和硫唑嘌呤代谢的研究。
Blut. 1988 Aug;57(2):97-100. doi: 10.1007/BF00319733.