Dickson Robert C
Department of Molecular and Cellular Biochemistry, University of Kentucky College of Medicine, Lexington, KY 40536-0509, USA.
J Lipid Res. 2008 May;49(5):909-21. doi: 10.1194/jlr.R800003-JLR200. Epub 2008 Feb 23.
Our understanding of sphingolipid metabolism and functions in the baker's yeast Saccharomyces cerevisiae has progressed substantially in the past 2 years. Yeast sphingolipids contain a C26-acyl moiety, all of the genes necessary to make these long-chain fatty acids have been identified, and a mechanism for how chain length is determined has been proposed. Advances in understanding how the de novo synthesis of ceramide and complex sphingolipids is regulated have been made, and they demonstrate that the Target Of Rapamycin Complex 2 (TORC2) controls ceramide synthase activity. Other work shows that TORC2 regulates the level of complex sphingolipids in a pathway using the Slm1 and Slm2 proteins to control the protein phosphatase calcineurin, which regulates the breakdown of complex sphingolipids. The activity of Slm1 and Slm2 has also been shown to be regulated during heat stress by phosphoinositides and TORC2, along with sphingoid long-chain bases and the Pkh1 and Pkh2 protein kinases, to control the actin cytoskeleton, the trafficking of nutrient transporters, and cell viability. Together, these results provide the first molecular insights into understanding previous genetic interaction data that indicated a connection between sphingolipids and the TORC2 and phosphoinositide signaling networks. This new knowledge provides a foundation for greatly advancing our understanding of sphingolipid biology in yeast.
在过去两年中,我们对面包酵母酿酒酵母中鞘脂代谢及其功能的理解有了实质性进展。酵母鞘脂含有一个C26酰基部分,现已鉴定出合成这些长链脂肪酸所需的所有基因,并提出了一种确定链长的机制。在了解神经酰胺和复合鞘脂的从头合成如何受到调控方面取得了进展,这些进展表明雷帕霉素复合物2(TORC2)靶点控制神经酰胺合酶活性。其他研究表明,TORC2在一条途径中调节复合鞘脂的水平,该途径利用Slm1和Slm2蛋白来控制蛋白磷酸酶钙调神经磷酸酶,而钙调神经磷酸酶调节复合鞘脂的分解。研究还表明,在热应激期间,Slm1和Slm2的活性受到磷酸肌醇、TORC2以及鞘氨醇长链碱基和Pkh1及Pkh2蛋白激酶的调节,以控制肌动蛋白细胞骨架、营养转运蛋白的运输和细胞活力。这些结果共同为理解先前表明鞘脂与TORC2和磷酸肌醇信号网络之间存在联系的遗传相互作用数据提供了首个分子层面的见解。这一新知识为大幅推进我们对酵母中鞘脂生物学的理解奠定了基础。