Tsegaye Yoseph, Richardson Christopher G, Bravo Janis E, Mulcahy Brendan J, Lynch Daniel V, Markham Jennifer E, Jaworski Jan G, Chen Ming, Cahoon Edgar B, Dunn Teresa M
Department of Biochemistry and Molecular Biology, Uniformed Services University of the Health Sciences, Bethesda, Maryland 20184, USA.
J Biol Chem. 2007 Sep 21;282(38):28195-206. doi: 10.1074/jbc.M705074200. Epub 2007 Jul 16.
The sphingoid long chain bases (LCBs) and their phosphorylated derivatives (LCB-Ps) are important signaling molecules in eukaryotic organisms. The cellular levels of LCB-Ps are tightly controlled by the coordinated action of the LCB kinase activity responsible for their synthesis and the LCB-P phosphatase and lyase activities responsible for their catabolism. Although recent studies have implicated LCB-Ps as regulatory molecules in plants, in comparison with yeast and mammals, much less is known about their metabolism and function in plants. To investigate the functions of LCB-Ps in plants, we have undertaken the identification and characterization of Arabidopsis genes that encode the enzymes of LCB-P metabolism. In this study the Arabidopsis At1g27980 gene was shown to encode the only detectable LCB-P lyase activity in Arabidopsis. The LCB-P lyase activity was characterized, and mutant plant lines lacking the lyase were generated and analyzed. Whereas in other organisms loss of LCB-P lyase activity is associated with accumulation of high levels of LCB/LCB-Ps and developmental abnormalities, the sphingolipid profiles of the mutant plants were remarkably similar to those of wild-type plants, and no developmental abnormalities were observed. Thus, these studies indicate that the lyase plays a minor role in maintenance of sphingolipid metabolism during normal plant development and growth. However, a clear role for the lyase was revealed upon perturbation of sphingolipid synthesis by treatment with the inhibitor of ceramide synthase, fumonisin B(1).
鞘氨醇长链碱(LCBs)及其磷酸化衍生物(LCB-Ps)是真核生物中重要的信号分子。LCB-Ps的细胞水平受到负责其合成的LCB激酶活性以及负责其分解代谢的LCB-P磷酸酶和裂解酶活性的协同作用的严格控制。尽管最近的研究表明LCB-Ps在植物中作为调节分子起作用,但与酵母和哺乳动物相比,我们对它们在植物中的代谢和功能了解得要少得多。为了研究LCB-Ps在植物中的功能,我们对拟南芥中编码LCB-P代谢酶的基因进行了鉴定和表征。在本研究中,拟南芥At1g27980基因被证明编码拟南芥中唯一可检测到的LCB-P裂解酶活性。我们对LCB-P裂解酶活性进行了表征,并生成并分析了缺乏该裂解酶的突变植物系。在其他生物体中,LCB-P裂解酶活性的丧失与高水平的LCB/LCB-Ps积累和发育异常有关,而突变植物的鞘脂谱与野生型植物非常相似,未观察到发育异常。因此,这些研究表明,在正常植物发育和生长过程中,该裂解酶在维持鞘脂代谢方面起次要作用。然而,在用神经酰胺合酶抑制剂伏马菌素B(1)处理干扰鞘脂合成后,该裂解酶的明确作用得以揭示。