Takagi K, Suganuma M, Kagechika H, Shudo K, Ninomiya M, Muto Y, Fujiki H
Cancer Prevention Division, National Cancer Center Research Institute, Tokyo, Japan.
J Cancer Res Clin Oncol. 1988;114(3):221-4. doi: 10.1007/BF00405825.
Retinobenzoic acids induce differentiation of human promyelocytic leukemia cells (HL-60). Like retinoic acid, 14 retinobenzoic acids inhibited the induction of ornithine decarboxylase (ODC) by teleocidin in mouse skin. The mechanism(s) of inhibition of ODC induction by 7 retinobenzoic acids, Am 80, Am 81, Am 580, Am 590, Am 68, Sa 80, and Ch 55 was compared with those by all-trans-retinoic acid and the arotinoid compound 19. Application of 114 nmol of Am 80, Am 81, Am 580, Am 590, Am 68, Sa 80, or Ch 55, 10 min before 11.4 nmol of teleocidin, resulted in 76.7%, 82.0%, 76.2%, 28.3%, 48.4%, 58.6%, and 85.1% inhibition of ODC induction, respectively. Since all-trans-retinoic acid and compound 19 were also inhibitory, we determined whether retinobenzoic acids bind to cellular retinoic acid-binding protein (CRABP) isolated from bovine adrenal glands. Am 80 and Am 580 inhibited the specific binding of 3H-retinoic acid to CRABP, but also showed less affinity than authentic unlabeled retinoic acid and compound 19. Am 81, Am 590, Am 68, Sa 80, and Ch 55 at up to 10 microM were not effective competitors of the binding of either 3H-retinoic acid or 3H-retinol. These results suggest that the inhibition of ODC induction can be mediated by pathways that do not involve CRABP or the cellular retinol-binding protein.
视黄基苯甲酸诱导人早幼粒细胞白血病细胞(HL - 60)分化。与视黄酸一样,14种视黄基苯甲酸抑制了teleocidin在小鼠皮肤中诱导鸟氨酸脱羧酶(ODC)的作用。比较了7种视黄基苯甲酸(Am 80、Am 81、Am 580、Am 590、Am 68、Sa 80和Ch 55)与全反式视黄酸及芳维甲酸化合物19抑制ODC诱导的机制。在11.4 nmol teleocidin作用前10分钟应用114 nmol的Am 80、Am 81、Am 580、Am 590、Am 68、Sa 80或Ch 55,分别导致ODC诱导受到76.7%、82.0%、76.2%、28.3%、48.4%、58.6%和85.1%的抑制。由于全反式视黄酸和化合物19也具有抑制作用,我们测定了视黄基苯甲酸是否与从牛肾上腺分离的细胞视黄酸结合蛋白(CRABP)结合。Am 80和Am 580抑制了3H - 视黄酸与CRABP的特异性结合,但与未标记的真实视黄酸和化合物19相比,亲和力也较低。高达10 microM的Am 81、Am 590、Am 68、Sa 80和Ch 55不是3H - 视黄酸或3H - 视黄醇结合的有效竞争物。这些结果表明,ODC诱导的抑制可通过不涉及CRABP或细胞视黄醇结合蛋白的途径介导。