van Echten-Deckert G, Zschoche A, Bär T, Schmidt R R, Raths A, Heinemann T, Sandhoff K
Institut für Organische Chemie und Biochemie der Universität Bonn, Gerhard-Domagk-Strasse 1, 53121 Bonn, Germany.
J Biol Chem. 1997 Jun 20;272(25):15825-33. doi: 10.1074/jbc.272.25.15825.
The effect of six different structurally modified sphingosine analogues on biosynthesis of sphingolipids was studied in primary cultured murine cerebellar neurons. Treatment of cells with cis-4-methylsphingosine at micromolar levels resulted in a markedly decreased sphingolipid biosynthesis, whereas the other compounds examined, trans-4-methylsphingosine, cis-5-methylsphingosine, trans-5-methylsphingosine, cis-sphingosine, and 1-deoxysphingosine, inhibited sphingolipid biosynthesis less efficiently. The inhibition of sphingolipid biosynthesis by the various compounds was paralleled by a decrease of serine palmitoyltransferase activity in situ. For cis-4-methylsphingosine the inhibitory effect on serine palmitoyltransferase activity was shown to be concentration- and time-dependent. Half-maximal reduction of enzyme activity occurred after 24 h of treatment with 10 microM of the compound. The activity of other enzymes of sphingolipid biosynthesis as well as phospholipid and protein biosynthesis was not affected. Analysis of the sphingoid moiety of cellular sphingolipids suggests that the sphingosine analogues listed above were subject to degradation rather than being utilized as precursors for sphingolipid biosynthesis by cultured neurons. Except of 1-deoxysphingosine, the other five sphingosine analogues were shown to be substrates for sphingosine kinase in vitro. After 24 h of treatment of primary cerebellar neurons with the various sphingosine analogues the relative percentage of the respective intracellular 1-phosphate derivatives paralleled exactly the inhibitory effect on serine palmitoyltransferase activity observed when cells were treated with the unphosphorylated compounds. In contrast to the respective 1-phosphate derivatives of the other methyl-branched sphingosine analogues examined, cis-4-methylsphingosine 1-phosphate showed an intracellular accumulation suggesting a delayed turnover rate in cultured murine neurons for this compound. These results suggest that the inhibitory effect of the sphingosine analogues on serine palmitoyltransferase is mediated by their respective 1-phosphate derivatives and that the pronounced effect of cis-4-methylsphingosine is caused by a high intracellular concentration of cis-4-methylsphingosine 1-phosphate. cis-4-Methylsphingosine, in addition, caused drastic changes in cell morphology of primary cerebellar neurons, which were not observed when these cells were treated with one of the other sphingosine analogues examined.
在原代培养的小鼠小脑神经元中研究了六种不同结构修饰的鞘氨醇类似物对鞘脂生物合成的影响。用微摩尔浓度的顺式 -4-甲基鞘氨醇处理细胞会导致鞘脂生物合成显著减少,而所检测的其他化合物,反式 -4-甲基鞘氨醇、顺式 -5-甲基鞘氨醇、反式 -5-甲基鞘氨醇、顺式鞘氨醇和 1-脱氧鞘氨醇,对鞘脂生物合成的抑制效率较低。各种化合物对鞘脂生物合成的抑制作用与原位丝氨酸棕榈酰转移酶活性的降低平行。对于顺式 -4-甲基鞘氨醇,对丝氨酸棕榈酰转移酶活性的抑制作用表现为浓度和时间依赖性。用 10 μM 该化合物处理 24 小时后,酶活性出现半数最大降低。鞘脂生物合成的其他酶以及磷脂和蛋白质生物合成的活性未受影响。对细胞鞘脂类鞘氨醇部分的分析表明,上述鞘氨醇类似物会被降解,而不是被培养的神经元用作鞘脂生物合成的前体。除 1-脱氧鞘氨醇外,其他五种鞘氨醇类似物在体外被证明是鞘氨醇激酶的底物。用各种鞘氨醇类似物处理原代小脑神经元 24 小时后,各自细胞内 1-磷酸衍生物的相对百分比与用未磷酸化化合物处理细胞时观察到的对丝氨酸棕榈酰转移酶活性的抑制作用完全平行。与所检测的其他甲基支链鞘氨醇类似物的各自 1-磷酸衍生物不同,顺式 -4-甲基鞘氨醇 1-磷酸在细胞内积累,表明该化合物在培养的小鼠神经元中的周转速率延迟。这些结果表明,鞘氨醇类似物对丝氨酸棕榈酰转移酶的抑制作用是由它们各自的 1-磷酸衍生物介导的,并且顺式 -4-甲基鞘氨醇的显著作用是由细胞内高浓度的顺式 -4-甲基鞘氨醇 1-磷酸引起的。此外,顺式 -4-甲基鞘氨醇会导致原代小脑神经元的细胞形态发生剧烈变化,而用所检测的其他鞘氨醇类似物之一处理这些细胞时未观察到这种变化。