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L1210细胞中6-氮杂尿苷三磷酸的鉴定及其与细胞毒性的可能关联。

Identification of 6-azauridine triphosphate in L1210 cells and its possible relevance to cytotoxicity.

作者信息

Wotring L L, Townsend L B

机构信息

Department of Pharmaceutical Chemistry, College of Pharmacy, University of Michigan, Ann Arbor 48109-1065.

出版信息

Cancer Res. 1989 Jan 15;49(2):289-94.

PMID:2463073
Abstract

L1210 cells treated with 1 mM 6-azauridine (AzUrd) (concentration causing 50% inhibition of cell growth, 3 microM) continued to divide at a reduced rate for 72 h before stopping. However, a 24-h treatment was lethal to 99% of the cells, as determined by colony formation. To investigate the mechanism for this delayed cytotoxicity, the metabolism of AzUrd was studied. Cells incubated with AzUrd contained a new 254 nm-absorbing component, not found in control cells. It appeared to be 6-azauridine-5'-triphosphate, since it was the only peak in the triphosphate region of the chromatogram which contained 3H after incubation of cells with [3H]AzUrd. Incorporation of [3H]AzUrd into the acid-insoluble fraction (nucleic acids) was also detected. A role for this incorporation in the mechanism of AzUrd cytotoxicity was strongly suggested by the observation that cordycepin (0.01 mM) partially protected cells from the lethality of AzUrd, presumably by preventing its incorporation into RNA. The previously known inhibition of pyrimidine de novo synthesis by AzUrd was confirmed by a decrease in the intracellular contents of UTP and CTP in AzUrd-treated cells. Therefore, we propose that the inhibition of pyrimidine de novo synthesis and the incorporation into nucleic acid(s) may act in concert to produce the cytotoxic effects of AzUrd.

摘要

用1 mM 6-氮杂尿苷(AzUrd)(导致细胞生长抑制50%的浓度,3 microM)处理的L1210细胞在停止生长前以降低的速率持续分裂72小时。然而,通过集落形成测定,24小时的处理对99%的细胞是致死的。为了研究这种延迟细胞毒性的机制,对AzUrd的代谢进行了研究。用AzUrd孵育的细胞含有一种新的在254 nm处有吸收的成分,在对照细胞中未发现。它似乎是6-氮杂尿苷-5'-三磷酸,因为它是在用[3H]AzUrd孵育细胞后色谱图中三磷酸区域中唯一含有3H的峰。还检测到[3H]AzUrd掺入酸不溶性部分(核酸)。虫草素(0.01 mM)部分保护细胞免受AzUrd的致死作用,这一观察结果有力地表明了这种掺入在AzUrd细胞毒性机制中的作用,推测是通过阻止其掺入RNA。AzUrd处理的细胞中UTP和CTP的细胞内含量降低,证实了AzUrd先前已知的对嘧啶从头合成的抑制作用。因此,我们提出嘧啶从头合成的抑制和掺入核酸可能共同作用产生AzUrd的细胞毒性作用。

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