Mellor Howard R, Neville David C A, Harvey David J, Platt Frances M, Dwek Raymond A, Butters Terry D
Glycobiology Institute, Department of Biochemistry, University of Oxford, South Parks Road, Oxford OX1 3QU, UK.
Biochem J. 2004 Aug 1;381(Pt 3):861-6. doi: 10.1042/BJ20031822.
Deoxynojirimycin (DNJ) analogues are inhibitors of ceramide glucosyltransferase (CGT), which catalyses the first step in the glucosphingolipid (GSL) biosynthetic pathway. We have synthesized a series of DNJ analogues to study the contribution of N-alk(en)yl side chains (C4, C9 or C18) to the behaviour of these analogues in cultured HL60 cells. When cells were treated for 16 h at non-cytotoxic concentrations of inhibitor, a 40-50% decrease in GSL levels was measured by HPLC analysis of GSL-derived oligosaccharides following ceramide glycanase digestion of GSL and 2-aminobenzamide labelling of the released oligosaccharides. Using a novel technique for short-term [14C]galactose labelling of cellular GSL, we used compound inhibition of GSL biosynthesis as a marker for compound uptake into cells. Surprisingly, the uptake of all three of the DNJ analogues was extremely rapid and was not dependent upon the length of the N-alk(en)yl moiety. Compound uptake occurred in less than 1 min, as shown by the complete inhibition of GSL labelling in cells treated with all the DNJ analogues. Greatly increased cellular retention of N-cis-13-octadecenyl-DNJ was observed relative to the shorter-chain compounds, N-butyl-DNJ and N-nonyl-DNJ, as indicated by complete inhibition of CGT 24 h after removal of inhibitor from the culture medium. The present study further characterizes the properties of N-alk(en)ylated DNJs, and demonstrates that increasing the length of the side chain is a simple way of improving imino sugar retention and therefore inhibitory efficacy for CGT in cultured cells.
脱氧野尻霉素(DNJ)类似物是神经酰胺葡萄糖基转移酶(CGT)的抑制剂,CGT催化糖鞘脂(GSL)生物合成途径的第一步。我们合成了一系列DNJ类似物,以研究N-烷(烯)基侧链(C4、C9或C18)对这些类似物在培养的HL60细胞中行为的影响。当细胞在非细胞毒性浓度的抑制剂作用下处理16小时后,通过对GSL衍生的寡糖进行高效液相色谱分析来测量GSL水平,该分析是在对GSL进行神经酰胺聚糖酶消化并对释放的寡糖进行2-氨基苯甲酰胺标记之后进行的,结果显示GSL水平降低了40-50%。我们使用一种用于细胞GSL短期[14C]半乳糖标记的新技术,将GSL生物合成的复合抑制作为化合物摄取到细胞中的标志物。令人惊讶的是,所有三种DNJ类似物的摄取都极其迅速,并且不依赖于N-烷(烯)基部分的长度。化合物摄取在不到1分钟内发生,这通过用所有DNJ类似物处理的细胞中GSL标记的完全抑制得以证明。相对于较短链的化合物N-丁基-DNJ和N-壬基-DNJ,观察到N-顺式-13-十八碳烯基-DNJ在细胞中的保留显著增加,这通过从培养基中去除抑制剂24小时后CGT的完全抑制得以表明。本研究进一步表征了N-烷(烯)基化DNJ的特性,并证明增加侧链长度是提高亚氨基糖保留率从而提高其在培养细胞中对CGT抑制效力的一种简单方法。