Verschuur A C, Brinkman J, Van Gennip A H, Leen R, Vet R J, Evers L M, Voûte P A, Van Kuilenburg A B
Laboratory of Genetic Metabolic Diseases, Divisions of Clinical Chemistry and Pediatrics, Academic Medical Centre, University of Amsterdam, Emma Kinderziekenhuis AMC, P.O. Box 22700, 1100 DE, Amsterdam, The Netherlands.
Leuk Res. 2001 Oct;25(10):891-900. doi: 10.1016/s0145-2126(01)00047-9.
Cyclopentenyl cytosine (CPEC) is a nucleoside-analogue that decreases the concentrations of cytidine triphosphate (CTP) and deoxycytidine triphosphate (dCTP) in leukemic cells by inhibiting the enzyme CTP synthetase, resulting in a decreased synthesis of RNA and DNA. Low concentrations of dCTP facilitate the phosphorylation of 1-beta-D arabinofuranosyl cytosine (araC) and the incorporation of arabinofuranosyl cytosine triphosphate (araCTP) into DNA. Apoptosis and necrosis were analyzed by flow cytometric detection of fluorescence-labeled Annexin V in a human T-lymphoblastic MOLT-3 cell-line after incubations with CPEC and/or araC. CPEC induced apoptosis and necrosis in a concentration- (50-300 nM) and time-dependent (8-16 h) way. The observed necrosis proved to be secondary to apoptosis as the caspase inhibitor benzyloxycarbonyl-Val-Ala-Asp-fluoromethylketone (zVAD-fmk) completely blocked the CPEC-induced apoptosis and necrosis. Coincubation of various concentrations of CPEC and araC for 16h showed a significant additive effect on the occurrence of apoptosis and (secondary) necrosis. In contrast, a preincubation with 37.5 nM of CPEC for 24 h, which by itself caused only minor apoptosis (4%), followed by a coincubation for 16 h with 62.5 nM of araC (7% of apoptotic cells), showed a synergistic effect on the induction of apoptosis (27%, P<0.001). Growth-inhibition experiments with CPEC and araC under various conditions showed an additive effect on the araC-induced growth-inhibition after 48 h. The results indicate that the cytotoxicity of araC can be increased in T-lymphoblasts by CPEC.
环戊烯基胞嘧啶(CPEC)是一种核苷类似物,它通过抑制CTP合成酶来降低白血病细胞中三磷酸胞苷(CTP)和三磷酸脱氧胞苷(dCTP)的浓度,从而导致RNA和DNA合成减少。低浓度的dCTP促进1-β-D-阿拉伯呋喃糖基胞嘧啶(araC)的磷酸化,并使三磷酸阿拉伯呋喃糖基胞嘧啶(araCTP)掺入DNA。在用CPEC和/或araC孵育后,通过流式细胞术检测荧光标记的膜联蛋白V,分析人T淋巴细胞白血病MOLT-3细胞系中的凋亡和坏死情况。CPEC以浓度(50-300 nM)和时间依赖性(8-16小时)的方式诱导凋亡和坏死。观察到的坏死被证明是凋亡的继发结果,因为半胱天冬酶抑制剂苄氧羰基-Val-Ala-Asp-氟甲基酮(zVAD-fmk)完全阻断了CPEC诱导的凋亡和坏死。将不同浓度的CPEC和araC共同孵育16小时,对凋亡和(继发性)坏死的发生显示出显著的相加作用。相比之下,先用37.5 nM的CPEC预孵育24小时(其本身仅引起轻微凋亡(4%)),然后再与62.5 nM的araC共同孵育16小时(7%的凋亡细胞),对凋亡诱导显示出协同作用(27%,P<0.001)。在各种条件下用CPEC和araC进行的生长抑制实验表明,48小时后对araC诱导的生长抑制有相加作用。结果表明,CPEC可增强araC对T淋巴细胞母细胞的细胞毒性。