首页> 美国卫生研究院文献>Biochemical Journal >Thymidylate synthetase-deficient mouse FM3A mammary carcinoma cell line as a tool for studying the thymidine salvage pathway and the incorporation of thymidine analogues into host cell DNA.
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Thymidylate synthetase-deficient mouse FM3A mammary carcinoma cell line as a tool for studying the thymidine salvage pathway and the incorporation of thymidine analogues into host cell DNA.

机译:胸苷酸合成酶缺陷型小鼠FM3A乳腺癌细胞系可作为研究胸苷拯救途径和将胸苷类似物掺入宿主细胞DNA的工具。

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摘要

A thymidylate (dTMP) synthetase-deficient murine mammary carcinoma cell line (FM3A/TS-), auxotrophic for thymidine (dThd), proved extremely useful for studying the dependence of cell growth on the exogenous supply of dThd, the relation between cell growth and DNA synthesis, and the ability of a series of 25 5-substituted 2'-deoxyuridines (dUrd) to substitute for dThd in sustaining cell growth. FM3A/TS-cells did not proliferate unless dThd was supplied to the cell culture medium. The 5-halogenated dUrd derivatives 5-chloro-dUrd, 5-bromo-dUrd and 5-iodo-d Urd also sustained FM3A/TS- cell growth. The extents of incorporation of [methyl-3H]dThd and 5-iodo-[6-3H]dUrd into DNA were closely correlated with their stimulatory effects on FM3A/TS- cell growth. This suggests that the stimulatory effects of the dUrd analogues on the growth rate of FM3A/TS- cells may be considered as evidence for their incorporation into host cell DNA. Based on this premise it is postulated that, in addition to 5-chloro-dUrd, 5-bromo-dUrd, 5-iodo-dUrd and dThd itself, the following dThd analogues are also incorporated into FM3A/TS- cell DNA (in order of the extent to which they are incorporated): 5-hydroxy-dUrd greater than 5-propynyloxy-dUrd greater than 5-ethyl-dUrd greater than 5-ethynyl-dUrd approximately 5-vinyl-dUrd. Thus, the dTMP synthetase-deficient FM3A/TS- cell line represents a unique system to dissociate the de novo and salvage pathways of dTMP biosynthesis and to distinguish those dUrd analogues that are incorporated into DNA from those that are not.
机译:胸腺嘧啶(dThd)营养缺陷型胸腺嘧啶(dTMP)合成酶缺陷型小鼠乳腺癌细胞系(FM3A / TS-)被证明对于研究细胞生长对dThd外源供应的依赖性,细胞生长与DNA合成,以及一系列25个5-取代的2'-脱氧尿苷(dUrd)在维持细胞生长中替代dThd的能力。除非将dThd提供给细胞培养基,否则FM3A / TS细胞不会增殖。 5卤代dUrd衍生物5-氯-dUrd,5-溴-dUrd和5-碘-d Urd也维持FM3A / TS-细胞的生长。将[methyl-3H] dThd和5-iodo- [6-3H] dUrd掺入DNA的程度与它们对FM3A / TS-细胞生长的刺激作用密切相关。这表明dUrd类似物对FM3A / TS-细胞生长速率的刺激作用可被认为是它们掺入宿主细胞DNA的证据。基于此前提,假定除了5-氯-dUrd,5-溴-dUrd,5-碘-dUrd和dThd本身外,还将以下dThd类似物掺入FM3A / TS细胞DNA中(顺序(它们掺入的程度):5-羟基-dUrd大于5-丙炔氧基-dUrd大于5-乙基-dUrd大于5-乙炔基-dUrd约5-乙烯基-dUrd。因此,dTMP合成酶缺陷的FM3A / TS-细胞系代表了一个独特的系统,该系统可解离dTMP生物合成的从头和挽救途径,并区分那些掺入DNA的dUrd类似物与那些没有结合的DNA。

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