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3-去氮尿苷在对阿糖胞苷敏感和耐药的肿瘤细胞中的作用机制。

The mechanism of action of 3-deazauridine in tumor cells sensitive and resistant to arabinosylcytosine.

作者信息

Brockman R W, Shaddix S C, Williams M, Nelson J A, Rose L M, Schabel F M

出版信息

Ann N Y Acad Sci. 1975 Aug 8;255:501-21. doi: 10.1111/j.1749-6632.1975.tb29254.x.

Abstract

Deazauridine inhibited growth of tumor cells in culture and in culture and in vivo; this agent was significantly more effective against L1210/AraC than against the parent sensitive line. Inhibition of growth of tumor cells in culture was prevented by uridine and cytidine and was partially alleviated by deoxycytidine, but not by deoxyuridine or thymidine. DeazaUR inhibited nucleic acid synthesis but not protein synthesis in tumor cells in culture; deoxycytidine alleviated inhibition of nucleic acid synthesis. The labeling of pyrimidine ribonucleotides by 6-14C-orotic acid was inhbited by deazaUR. DeazaUR treatment of tumor cells in culture resulted in increased uptake of cytidine-3H into RNA, whereas uridine-3H uptake into RNA was inhibited. Labelling of DNA by uridine-3H/ and cytidine-H was inhibited by deazaUR. Pools of CMP, CDP, and CTP decreased markedly during deazaUR treatment of L1210 cells in culture and in vivo. These observations in growing cells pointed to deazaUR inhibition of the synthesis of cytidylic acid. Deazauridine 5'-triphosphate was found to be an inhibitor of the synthesis of CTP from UTP catalyzed by enzyme preparations from L1210 cells. This observation is in agreement with those of McPartland et al.19 that deazaUTP inhibited CTP synthetase purified from calf liver. Deazauridine treatment of L1210 cells in culture stimulated the uptake of deoxycytidine-3H into DNA while inhibiting the uptake of 3H-labeled deoxyuridine, thymidine, deoxyadenosine, and deoxyguanosine. Intracellular pools of dCTP were decreased by deazauridine treatment in L1210 cells in culture and in vivo. Deazauridine 5'-diphosphate inhibited the enzymatic reduction of pyrimidine ribonucleoside 5'-diphosphates to the corresponding deoxyribonucleotides. These results are consistent with the view that deazauridine, after its uptake and intracellular phosphorylation, strongly inhibits the formation of CTP. This is considered to be the primary metabolic effect of the analog. A secondary effect appears to be an inhibition of dCTP formation.

摘要

地扎胞苷在体外培养和体内均能抑制肿瘤细胞的生长;该药物对L1210/AraC细胞的作用明显强于对亲本敏感细胞系的作用。尿苷和胞苷可阻止地扎胞苷对体外培养肿瘤细胞生长的抑制作用,脱氧胞苷可部分缓解这种抑制作用,而脱氧尿苷或胸苷则无此作用。地扎胞苷抑制体外培养肿瘤细胞的核酸合成,但不抑制蛋白质合成;脱氧胞苷可缓解对核酸合成的抑制。6-14C-乳清酸对嘧啶核糖核苷酸的标记被地扎胞苷抑制。体外培养肿瘤细胞经地扎胞苷处理后,胞苷-3H进入RNA的摄取增加,而尿苷-3H进入RNA的摄取受到抑制。地扎胞苷抑制尿苷-3H和胞苷-3H对DNA的标记。在体外培养和体内对地扎胞苷处理L1210细胞的过程中,CMP、CDP和CTP池显著减少。这些在生长细胞中的观察结果表明地扎胞苷抑制胞苷酸的合成。发现地扎胞苷5'-三磷酸是L1210细胞酶制剂催化UTP合成CTP的抑制剂。这一观察结果与McPartland等人的结果一致,即脱氧阿糖脲苷抑制从小牛肝脏纯化的CTP合成酶。体外培养地扎胞苷处理L1210细胞可刺激脱氧胞苷-3H进入DNA的摄取,同时抑制3H标记的脱氧尿苷、胸苷、脱氧腺苷和脱氧鸟苷的摄取。在体外培养和体内,地扎胞苷处理L1210细胞可使细胞内dCTP池减少。地扎胞苷5'-二磷酸抑制嘧啶核糖核苷5'-二磷酸酶促还原为相应的脱氧核糖核苷酸。这些结果与以下观点一致:地扎胞苷摄取并在细胞内磷酸化后,强烈抑制CTP的形成。这被认为是该类似物的主要代谢作用。次要作用似乎是抑制dCTP的形成。

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