Department of Experimental Medicine and Biochemical Sciences, University of Rome 'Tor Vergata', Rome, Italy.
Cell Death Dis. 2012 Jul 26;3(7):e358. doi: 10.1038/cddis.2012.97.
We have recently found that D(-)lentiginosine, a synthetic iminosugar exerting glucosidase inhibitory activity, but not its natural enantiomer lentiginosine, is endowed with an unexpected, pro-apoptotic activity. Here, we investigated mechanisms involved in apoptosis induced by D(-)lentiginosine in MOLT-3, HT-29 and SH-SY5Y tumour cell lines. The results showed that D(-)lentiginosine increased caspase 9 expression at 18 h in all the cell lines from 1.5-3.1 folds. Cytochrome c in the cytoplasm was found to be increased from 2.3-2.6 folds in treated cells with respect to control cells. These effects were accompanied by a remarkable collapse of the mitochondrial membrane potential and by the downregulation of anti-apoptotic genes, as well as the upregulation of pro-apoptotic genes of the Bcl-2 family. U937Bcl-2 transfectants, highly expressing Bcl-2, were reluctant to undergo apoptosis even following treatment with 500 μM D(-)lentiginosine, whereas apoptosis by D(-)lentiginosine was induced also in U937 cells, naturally deficient in P53. Thus, our study establishes that the enantiomer of a natural iminosugar is endowed with a possible anti-tumorigenic effect that might be ascribed not only to their capacity to inhibit glycosidases but also to other unknown mechanisms. These data encourage further investigation on similar compounds to make them an interesting platform for the generation of new anticancer drugs.
我们最近发现,具有葡萄糖苷酶抑制活性的合成型差向异构化肌醇(iminosugar)D(-)齿龈素,而不是其天然对映异构体 L(-)齿龈素,具有意想不到的促凋亡活性。在这里,我们研究了 D(-)齿龈素在 MOLT-3、HT-29 和 SH-SY5Y 肿瘤细胞系中诱导细胞凋亡的机制。结果表明,在所有细胞系中,D(-)齿龈素在 18 小时时将 caspase 9 的表达增加了 1.5-3.1 倍。与对照细胞相比,用 D(-)齿龈素处理的细胞中细胞质中的细胞色素 c 增加了 2.3-2.6 倍。这些效应伴随着线粒体膜电位的显著崩溃,以及抗凋亡基因的下调,以及 Bcl-2 家族的促凋亡基因的上调。高表达 Bcl-2 的 U937Bcl-2 转染子甚至在 500 μM D(-)齿龈素处理后也不容易发生凋亡,而 D(-)齿龈素也能诱导自然缺乏 P53 的 U937 细胞发生凋亡。因此,我们的研究表明,天然肌醇差向异构体的对映体具有潜在的抗肿瘤作用,这不仅归因于它们抑制糖苷酶的能力,还归因于其他未知机制。这些数据鼓励对类似化合物进行进一步研究,使它们成为生成新抗癌药物的有趣平台。