Pohlentz G, Drees B
Institut für Physiologische Chemie, Universität Bonn, Germany.
Biol Chem. 2000 Jan;381(1):29-34. doi: 10.1515/BC.2000.004.
The neoglycolipid (NeoGL) N-acetyl-1-deoxy-1-phosphatidylethanolamino lacto-N-tetraositol [Lc4Ose-PtdEtn(NAc)] and the radioactivly labeled analog [Lc4Ose-PtdEtn(N[14C]Ac)] were synthesized by coupling the corresponding oligosaccharide to phosphatidylethanolamine (dihexadecyl) via reductive amination and subsequent N-acetylation with unlabeled and [14C]acetic acid anhydride, respectively. Lc4Ose-PtdEtn(N[14C]Ac) was then incubated with homogenates of rat small intestine epithelial cells (IEC-6) at pH 4. The reaction products were shown to be the degradation products formed by glycosidases by fast atom bombardment mass spectrometry (FAB MS). On the other hand, incubation of Lc4Ose-PtdEtn(NAc) with IEC-6 cell homogenates in sialyltransferase assays yielded the corresponding sialylated product. When Lc4Ose-PtdEtn(N[14C]Ac) was fed to IEC-6 cells as BSA complex, up to 5% of the NeoGL administered were taken up by the cells. After extraction of the NeoGL and separation by thin layer chromatography (TLC) the catabolic products Lc3Ose-PtdEtn(N[14C]Ac), Lac-PtdEtn(N[14C]Ac), and Glc-PtdEtn(N[14C]Ac), as well as the main anabolic product NeuGc-Lc4Ose-PtdEtn(N[14C]Ac) could be identified by FAB MS. These results demonstrate that PtdEtn-derived NeoGL can be used as probes for studies on the metabolism of specific oligosaccharide structures in cell culture.
新糖脂(NeoGL)N-乙酰-1-脱氧-1-磷脂酰乙醇胺乳糖-N-四糖[Lc4Ose-PtdEtn(NAc)]和放射性标记类似物[Lc4Ose-PtdEtn(N[¹⁴C]Ac)]分别通过还原胺化将相应的寡糖与磷脂酰乙醇胺(二十六烷基)偶联,随后分别用未标记的和[¹⁴C]乙酸酐进行N-乙酰化反应合成。然后将Lc4Ose-PtdEtn(N[¹⁴C]Ac)在pH 4条件下与大鼠小肠上皮细胞(IEC-6)匀浆一起温育。通过快原子轰击质谱(FAB MS)显示反应产物是糖苷酶形成的降解产物。另一方面,在唾液酸转移酶测定中,将Lc4Ose-PtdEtn(NAc)与IEC-6细胞匀浆一起温育产生了相应的唾液酸化产物。当将Lc4Ose-PtdEtn(N[¹⁴C]Ac)作为牛血清白蛋白复合物喂给IEC-6细胞时,高达5%的给予的NeoGL被细胞摄取。提取NeoGL并通过薄层色谱(TLC)分离后,通过FAB MS可以鉴定出分解代谢产物Lc3Ose-PtdEtn(N[¹⁴C]Ac)、Lac-PtdEtn(N[¹⁴C]Ac)和Glc-PtdEtn(N[¹⁴C]Ac)以及主要的合成代谢产物NeuGc-Lc4Ose-PtdEtn(N[¹⁴C]Ac)。这些结果表明,源自PtdEtn的NeoGL可作为探针用于细胞培养中特定寡糖结构代谢的研究。