...
首页> 外文期刊>Lipids >A novel assay method for glycosphingolipid deacylase by enzyme-linked immunochemical detection of lysoglycosphingolipid
【24h】

A novel assay method for glycosphingolipid deacylase by enzyme-linked immunochemical detection of lysoglycosphingolipid

机译:酶联免疫化学法检测糖鞘糖脂的新方法

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Lysoglycosphingolipids consist of a sphingoid long-chain base and monosaccharide or complex sugar, and they lack the fatty acyl group present in native glycosphingolipids. Less than 1 pmol of lyso-Forssman glycolipid and lysoganglioside GM1 were detected on a thin-layer chromatogram by an enzyme-linked immunochemical coloration method with anti-Forssman glycolipid antibody (FOM-1) and cholera toxin B subunit, respectively. Each spot between 1 and 100 pmol lyso-Forssman glycolipid was immunostained as densely as that of the same amount of native Forssman glycolipid. The density of the lyso-Forssman glycolipid spots increased proportionally with increment in the amount of lysoglycolipid. The density of spots of 0.2–100 pmol lysoganglioside GM1 was also proportional to the amount of each lyso-GM1 spot. These results indicated that less than 1 to 100 pmol of deacylated glycosphingolipid was quantifiable by the immunochemical coloration method with sugar chain-specific antibodies. Glycosphingolipid deacylase, which cleaved an amide bond between the sphingoid long-chain base and fatty acyl chain in ceramide of glycosphingolipid, was assayed by detecting the lyso-Forssman glycolipid produced. Lipophilic compounds, recovered from an aliquot of the reaction mixture of Forssman glycolipid and crude enzyme at appropriate times, were analyzed by thin-layer chromatography. It was found that lyso-Forssman glycolipid was produced in the first 1–2 h by the enzyme and production increased with incubation time. This coloration method is more sensitive and specific than the visualization method with a non-specific reagent such as orcinol-sulfuric acid reagent.
机译:溶血糖鞘脂由鞘糖脂长链碱基和单糖或复合糖组成,它们缺少天然糖鞘脂中存在的脂肪酰基。在薄层色谱图上,通过酶联免疫化学染色法分别用抗福斯曼糖脂抗体(FOM-1)和霍乱毒素B亚基检测到不到1 pmol的溶血-福斯曼糖脂和溶血神经节苷脂GM1。 1至100 pmol溶血-福斯曼糖脂中的每个斑点均与相同量的天然福斯曼糖脂一样被免疫染色。溶血-福斯曼糖脂斑点的密度与溶血糖脂量的增加成比例地增加。 0.2-100 pmol溶血神经节苷脂GM1的斑点密度也与每个溶血GM1斑点的数量成正比。这些结果表明通过糖链特异性抗体的免疫化学着色方法可定量的脱酰基糖鞘糖脂少于1至100 pmol。通过检测所产生的溶酶-福尔曼糖脂,测定了糖鞘脂脱酰基酶,该酶裂解了鞘糖脂脂的神经酰胺中的鞘脂长链碱基和脂肪酰基链之间的酰胺键。通过薄层色谱分析在适当的时间从福斯曼糖脂和粗酶的反应混合物的等分试样中回收的亲脂性化合物。研究发现,酶在最初的1-2小时内产生了溶酶-福尔曼糖脂,并且随着培养时间的增加而增加。该着色方法比使用非特异性试剂(例如,蓖麻酚-硫酸试剂)的可视化方法更加灵敏和特异。

著录项

  • 来源
    《Lipids》 |2001年第1期|97-101|共5页
  • 作者单位

    Hokkaido National Industrial Research Institute. AIST. MITI;

    Hokkaido National Industrial Research Institute. AIST. MITI;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号