Szekeres T, Schuchter K, Chiba P, Ressmann G, Lhotka C, Gharehbaghi K, Szalay S M, Pillwein K
Institute of Medical Chemistry, University of Vienna, Medical School, Vienna.
Biochem Pharmacol. 1993 Dec 3;46(11):1903-7. doi: 10.1016/0006-2952(93)90630-f.
The activity of IMP dehydrogenase (EC 1.2.1.14), the key enzyme of de novo guanylate biosynthesis, was shown to be increased in tumor cells. Tiazofurin (TR), a potent and specific inhibitor of this enzyme, proved to be effective in the treatment of refractory granulocytic leukemia in blast crisis. We examined the effects of tiazofurin as a single agent and in combination with hypoxanthine and allopurinol in six different neuroectodermal tumor cell lines, the STA-BT-3 and 146-18 human glioblastoma cell lines, the SK-N-SH, LA-N-1 and LA-N-5 human neuroblastoma cell lines, and the STA-ET-1 Ewing tumor cell line. Tiazofurin inhibited tumor cell growth with IC50 values between 2.2 microM (LA-N-1 cell line) and 550 microM (LA-N-5 cells) and caused a significant decrease of intracellular GTP pools (GTP concentrations decreased to 39-79% of control). Incorporation of [8-14C]guanine into GTP pools was determined as a measure of guanylate salvage activity; incubation with 100 microM hypoxanthine caused a 62-96% inhibition of the salvage pathway. Incubation with tiazofurin (100 microM) and hypoxanthine (100 microM) synergistically inhibited tumor cell growth, and the addition of allopurinol (100 microM) strengthened these effects. Therefore, this drug combination, inhibiting guanylate de novo and salvage pathways, may prove useful in the treatment of human neuroectodermal tumors.
肌苷酸脱氢酶(EC 1.2.1.14)是从头合成鸟苷酸的关键酶,其活性在肿瘤细胞中有所增加。噻唑呋林(TR)是该酶的一种强效特异性抑制剂,已被证明对难治性粒细胞白血病急变期的治疗有效。我们研究了噻唑呋林作为单一药物以及与次黄嘌呤和别嘌呤醇联合使用对六种不同神经外胚层肿瘤细胞系的影响,这些细胞系包括STA - BT - 3和146 - 18人胶质母细胞瘤细胞系、SK - N - SH、LA - N - 1和LA - N - 5人神经母细胞瘤细胞系以及STA - ET - 1尤因肿瘤细胞系。噻唑呋林抑制肿瘤细胞生长,IC50值在2.2微摩尔/升(LA - N - 1细胞系)至550微摩尔/升(LA - N - 5细胞)之间,并导致细胞内GTP池显著减少(GTP浓度降至对照的39 - 79%)。测定[8 - 14C]鸟嘌呤掺入GTP池的情况作为鸟苷酸补救活性的指标;与100微摩尔/升次黄嘌呤孵育导致补救途径受到62 - 96%的抑制。与噻唑呋林(100微摩尔/升)和次黄嘌呤(100微摩尔/升)共同孵育可协同抑制肿瘤细胞生长,添加别嘌呤醇(100微摩尔/升)可增强这些作用。因此,这种抑制鸟苷酸从头合成和补救途径的药物组合可能对人类神经外胚层肿瘤的治疗有用。