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磷酸多萜醇的酶促糖基化以及BHK - 21细胞微粒体将分离出的磷酸多萜醇 - D - 葡萄糖从磷酸多萜醇 - D - 葡萄糖转移至神经酰胺的过程。

Enzymatic glucosylation of dolichol monophosphate and transfer of glucose from isolated dolichyl-D-glucosyl phosphate to ceramides by BHK-21 cell microsomes.

作者信息

Suzuki Y, Ecker C P, Blough H A

出版信息

Eur J Biochem. 1984 Sep 3;143(2):447-53. doi: 10.1111/j.1432-1033.1984.tb08392.x.

Abstract

Enzymatic glucosylation of dolichol monophosphate (dolichol-P) from UDP-D-[3H]glucose was studied using the microsomal fraction of BHK-21 cells. The reaction product was separated by preparative thin-layer chromatography, further purified by DEAE-cellulose acetate column chromatography, and characterized as dolichyl-beta-D-glucosyl phosphate (Dol-P-Glc). The microsomal fraction of BHK cells catalyzed the incorporation of glucose from UDP-[3H]glucose into ceramides (endogenous and exogenous) and Dol-P; both reactions required Mn2+. Maximal glucosylation of Dol-P was achieved at pH 5.6-5.8 in the presence of a non-ionic detergent, Zonyl A. Glucosylation of exogenous Dol-P, from UDP-Glc, was non-competitively inhibited by exogenous ceramides. Incubation of Dol-P-[3H]Glc or Dol-P-[14C]Glc with liposomes (containing ceramides) and the microsomal fraction of BHK-21 cells resulted in the formation of a radioactive glucolipid which comigrated with the same RF value as glucosylceramide (Glc-Cer) on silica gel thin-layer chromatography. Transfer of [14C]glucose from Dol-P-[14C]Glc to exogenous ceramides was confirmed by double-labeling techniques. The pH dependence for transfer of radio-labeled glucose from Dol-P-[3H]Glc to ceramides was multi-phasic (optima at pH 4.0 and 7.0); glycosylation occurred within 5 min and Zonyl A was absolutely essential for the transfer reaction. These results indicate that Dol-P-Glc may also participate in the synthesis of ceramide hexosides.

摘要

利用BHK - 21细胞的微粒体部分研究了来自UDP - D - [³H]葡萄糖的磷酸多萜醇(dolichol - P)的酶促糖基化作用。反应产物通过制备型薄层色谱法分离,再经DEAE - 纤维素醋酸柱色谱法进一步纯化,并鉴定为多萜醇 - β - D - 葡萄糖基磷酸酯(Dol - P - Glc)。BHK细胞的微粒体部分催化UDP - [³H]葡萄糖中的葡萄糖掺入神经酰胺(内源性和外源性)以及Dol - P中;这两个反应都需要Mn²⁺。在非离子洗涤剂Zonyl A存在的情况下,Dol - P的最大糖基化作用在pH 5.6 - 5.8时实现。外源性神经酰胺对来自UDP - Glc的外源性Dol - P的糖基化作用具有非竞争性抑制作用。将Dol - P - [³H]Glc或Dol - P - [¹⁴C]Glc与脂质体(含神经酰胺)以及BHK - 21细胞的微粒体部分一起温育,导致形成一种放射性糖脂,在硅胶薄层色谱上其迁移率与葡萄糖神经酰胺(Glc - Cer)相同。通过双标记技术证实了[¹⁴C]葡萄糖从Dol - P - [¹⁴C]Glc转移至外源性神经酰胺。放射性标记的葡萄糖从Dol - P - [³H]Glc转移至神经酰胺的pH依赖性是多相的(在pH 4.0和7.0时最佳);糖基化在5分钟内发生,并且Zonyl A对于转移反应是绝对必需的。这些结果表明Dol - P - Glc也可能参与神经酰胺己糖苷的合成。

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