Lab. Biochemistry & Molecular Biology, San Paolo Hospital, Medical School, University of Milan, Via A. di Rudinì 8, 20142 Milan, Italy.
Int J Biochem Cell Biol. 2012 Dec;44(12):2135-43. doi: 10.1016/j.biocel.2012.08.025. Epub 2012 Sep 7.
Dihydroceramides, the precursors of ceramides in the de novo sphingolipid synthesis, have been recently implicated in active signalling. We previously demonstrated that dihydroceramide accumulation, in response to treatment with the dihydroceramide desaturase inhibitor XM462, induced autophagy with no sign of cell death in the gastric carcinoma HCG27 cell line. Here we show that XM462 treatment induces a transient early increase in dihydroceramides that are successively metabolized into other sphingolipids. Dihydroceramides accumulation is associated with cyclin D1 expression modulation, delayed G1/S transition of cell cycle and increased autophagy. Moreover, XM462 treatment induces ER stress via the activation of the translation inhibitor eIF2α and the pro-survival transcriptional factor Xbp1. Exogenous addition of a short chain dihydroceramide analog reproduces the effects of endogenous accumulation of dihydroceramides, causing cell cycle delay of the G1/S transition, autophagy enhancement, eIF2α activation and Xbp1 splicing. Blocking autophagy with 3-methyladenine abrogates the effect of XM462 on cell cycle and reduces cell survival to XM462 treatment. Furthermore, the XM462-induced survival response is able to reduce etoposide toxicity in HCG27 and HCT116 cancer cells. Our data suggest a role of dihydroceramide in regulating cell proliferation and survival.
二氢神经酰胺是从头合成神经酰胺的前体,最近被认为在活性信号中起作用。我们之前证明,二氢神经酰胺积累,作为二氢神经酰胺去饱和酶抑制剂 XM462 的治疗反应,在胃癌 HCG27 细胞系中诱导自噬而没有细胞死亡的迹象。在这里,我们表明 XM462 处理诱导二氢神经酰胺的短暂早期增加,随后代谢成其他鞘脂。二氢神经酰胺积累与细胞周期调控因子 cyclin D1 的表达调节、细胞周期 G1/S 期的延迟和自噬的增加有关。此外,XM462 处理通过翻译抑制剂 eIF2α 和存活转录因子 Xbp1 的激活诱导 ER 应激。添加短链二氢神经酰胺类似物可再现内源性二氢神经酰胺积累的作用,导致 G1/S 期细胞周期延迟、自噬增强、eIF2α 激活和 Xbp1 剪接。用 3-甲基腺嘌呤阻断自噬会破坏 XM462 对细胞周期的影响,并降低细胞对 XM462 处理的存活能力。此外,XM462 诱导的存活反应能够降低 HCG27 和 HCT116 癌细胞中依托泊苷的毒性。我们的数据表明二氢神经酰胺在调节细胞增殖和存活方面起作用。