Meier Karsten D, Deloche Olivier, Kajiwara Kentaro, Funato Kouichi, Riezman Howard
Department of Biochemistry, Biozentrum of the University of Basel, CH-4056 Basel, Switzerland.
Mol Biol Cell. 2006 Mar;17(3):1164-75. doi: 10.1091/mbc.e05-11-1039. Epub 2005 Dec 28.
Sphingolipids are required for many cellular functions including response to heat shock. We analyzed the yeast lcb1-100 mutant, which is conditionally impaired in the first step of sphingolipid biosynthesis and shows a strong decrease in heat shock protein synthesis and viability. Transcription and nuclear export of heat shock protein mRNAs is not affected. However, lcb1-100 cells exhibited a strong decrease in protein synthesis caused by a defect in translation initiation under heat stress conditions. The essential lipid is sphingoid base, not ceramide or sphingoid base phosphates. Deletion of the eIF4E-binding protein Eap1p in lcb-100 cells restored translation of heat shock proteins and increased viability. The translation defect during heat stress in lcb1-100 was due at least partially to a reduced function of the sphingoid base-activated PKH1/2 protein kinases. In addition, depletion of the translation initiation factor eIF4G was observed in lcb1-100 cells and ubiquitin overexpression allowed partial recovery of translation after heat stress. Taken together, we have shown a requirement for sphingoid bases during the recovery from heat shock and suggest that this reflects a direct lipid-dependent signal to the cap-dependent translation initiation apparatus.
鞘脂对于许多细胞功能都是必需的,包括对热休克的反应。我们分析了酵母lcb1 - 100突变体,该突变体在鞘脂生物合成的第一步存在条件性缺陷,并且热休克蛋白合成和活力显著下降。热休克蛋白mRNA的转录和核输出不受影响。然而,lcb1 - 100细胞在热应激条件下由于翻译起始缺陷导致蛋白质合成显著下降。必需的脂质是鞘氨醇碱,而非神经酰胺或鞘氨醇碱磷酸盐。在lcb - 100细胞中缺失eIF4E结合蛋白Eap1p可恢复热休克蛋白的翻译并提高活力。lcb1 - 100在热应激期间的翻译缺陷至少部分归因于鞘氨醇碱激活的PKH1/2蛋白激酶功能降低。此外,在lcb1 - 100细胞中观察到翻译起始因子eIF4G的消耗,并且泛素过表达允许热应激后翻译部分恢复。综上所述,我们已经证明了热休克恢复过程中对鞘氨醇碱的需求,并表明这反映了一种直接的脂质依赖性信号作用于帽依赖性翻译起始装置。