Cai J, Lee C W
Department of Physiology, National University of Singapore, Singapore.
Biochem J. 1996 Dec 15;320 ( Pt 3)(Pt 3):991-5. doi: 10.1042/bj3200991.
Tamoxifen inhibits the binding of [3H]nitrobenzylthioinosine ([3H]NBMPR) to human MCF-7 breast cancer cells with an IC50 of 8 microM. Tamoxifen at 30 microM changed the apparent Kd for [3H]NBMPR binding from 0.63 +/- 0.12 to 4.75 +/- 0.58 nM, with little effect on the Bmax (311000 +/- 76000 and 263000 +/- 46000 sites per cell for untreated and tamoxifen-treated cells respectively). Corresponding to this decrease in binding of [3H]NBMPR in the presence of tamoxifen was an inhibition of NBMPR-sensitive equilibrative transport of 50 microM [3H]uridine (IC50 7-10 microM). In the presence of 15 microM tamoxifen, the apparent K(m) for [3H]uridine transport was increased from 390 +/- 30 to 1500 +/- 250 microM, with no change in Vmax (12.0 +/- 0.1 and 11.3 +/- 4.3 microM/s for untreated and tamoxifen-treated cells respectively). The inhibitory effect of tamoxifen on NBMPR-sensitive equilibrative uridine transport was specific, as similar results were also observed in HL-60 leukaemia and EL4 lymphoma cells. Furthermore a similar concentration of tamoxifen had no effect on the NBMPR-insensitive equilibrative transport of uridine in MCF-7, HL-60 and Morris 7777 hepatoma cells, and on the Na(+)-dependent transport of uridine in murine splenocytes. In this paper we demonstrate that tamoxifen by itself might have some antiproliferative effects through inhibition of DNA synthesis by blocking the nucleoside salvage pathway.
他莫昔芬抑制[3H]硝基苄硫肌苷([3H]NBMPR)与人MCF-7乳腺癌细胞的结合,IC50为8微摩尔。30微摩尔的他莫昔芬使[3H]NBMPR结合的表观Kd从0.63±0.12变为4.75±0.58纳摩尔,对Bmax影响很小(未处理细胞和他莫昔芬处理细胞分别为每个细胞311000±76000和263000±46000个位点)。与他莫昔芬存在时[3H]NBMPR结合的这种减少相对应的是对50微摩尔[3H]尿苷的NBMPR敏感平衡转运的抑制(IC50为7 - 10微摩尔)。在15微摩尔他莫昔芬存在下,[3H]尿苷转运的表观K(m)从390±30增加到1500±250微摩尔,Vmax无变化(未处理细胞和他莫昔芬处理细胞分别为12.0±0.1和11.3±4.3微摩尔/秒)。他莫昔芬对NBMPR敏感平衡尿苷转运的抑制作用具有特异性,因为在HL-60白血病细胞和EL4淋巴瘤细胞中也观察到了类似结果。此外,相似浓度的他莫昔芬对MCF-7、HL-60和Morris 7777肝癌细胞中尿苷的NBMPR不敏感平衡转运以及对小鼠脾细胞中尿苷的Na(+)依赖性转运均无影响。在本文中,我们证明他莫昔芬本身可能通过阻断核苷补救途径抑制DNA合成而具有一些抗增殖作用。