Parker W B, Shaddix S C, Rose L M, Tiwari K N, Montogmery J A, Secrist J A, Bennett L L
Southern Research Institute, Birmingham, AL 35205, USA.
Biochem Pharmacol. 1995 Aug 25;50(5):687-95. doi: 10.1016/0006-2952(95)00178-3.
4'-Thiothymidine (S-dThd) is a potent inhibitor of L1210 cell growth and is active against P388 leukemia in mice. Because of these activities and its novel structure, we have begun studies of its metabolism and metabolic actions in L1210 cells in order to understand its mechanism of cytotoxicity, S-dThd inhibited the incorporation of radiolabeled precursors into DNA, but did not inhibit the incorporation of either uridine or leucine into RNA or protein, respectively, which indicated that the mechanism of its toxicity was due to its inhibition of DNA synthesis. S-dThd did not decrease the concentration of any of the natural deoxynucleoside triphosphates, which indicated that its cytotoxicity was not due to the inhibition of ribonucleotide reductase. S-dThd was readily phosphorylated and used as a substrate for DNA synthesis. Because the rate of incorporation of S-dThd into DNA was 20% that of thymidine, it is likely that the mechanism of action of S-dThd is not due to inhibition of DNA polymerases by the 5'-triphosphate of S-dThd, but instead to its incorporation into the DNA and its subsequent disruption of some function of DNA.
4'-硫代胸苷(S-dThd)是L1210细胞生长的强效抑制剂,对小鼠P388白血病具有活性。鉴于这些活性及其新颖的结构,我们已开始研究其在L1210细胞中的代谢和代谢作用,以了解其细胞毒性机制。S-dThd抑制放射性标记前体掺入DNA,但不分别抑制尿苷或亮氨酸掺入RNA或蛋白质,这表明其毒性机制是由于其对DNA合成的抑制。S-dThd不会降低任何天然脱氧核苷三磷酸的浓度,这表明其细胞毒性不是由于对核糖核苷酸还原酶的抑制。S-dThd很容易被磷酸化并用作DNA合成的底物。由于S-dThd掺入DNA的速率是胸苷的20%,因此S-dThd的作用机制可能不是由于S-dThd的5'-三磷酸抑制DNA聚合酶,而是由于其掺入DNA并随后破坏DNA的某些功能。