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CMP-N-乙酰神经氨酸、GDP-岩藻糖和UDP-半乳糖的管腔内池及转运。对经质膜通透处理的小鼠胸腺细胞的研究。

Intralumenal pool and transport of CMP-N-acetylneuraminic acid, GDP-fucose and UDP-galactose. Study with plasma-membrane-permeabilized mouse thymocytes.

作者信息

Cacan R, Cecchelli R, Hoflack B, Verbert A

出版信息

Biochem J. 1984 Nov 15;224(1):277-84. doi: 10.1042/bj2240277.

Abstract

Treatment with NH4Cl of mouse thymocytes renders their plasma membrane permeable to sugar nucleotides both inwards and outwards. Using this model, we studied the entry and utilization of CMP-NeuAc, GDP-Fuc and UDP-Gal into intracellular vesicles in situ. It is shown that CMP-NeuAc and GDP-Fuc enter the vesicles in a manner indicating a carrier-mediated transport (substrate saturation curve, inhibition by substrate analogues, temperature dependence) and are entrapped in their uncleaved form. This leads to the formation of an intralumenal pool of these precursors which can be further utilized by the sialyltransferases and fucosyltransferases. The occurrence of an endogenous pool of CMP-NeuAc and GDP-Fuc is demonstrated by the fact that, when the vesicles are disrupted by detergent, the release of the endogenous sugar nucleotides causes an isotopic dilution of the labelled precursors added to measure the glycosyltransferase activities. In contrast, no accumulation of UDP-Gal has been detected, suggesting that transport and transfer reaction are simultaneous events. However, experiments with UDP 2',3'-dialdehyde indicate that UDP-Gal is not transported through the membrane by galactosyltransferase action but by a distinct carrier molecule.

摘要

用氯化铵处理小鼠胸腺细胞可使其质膜对糖核苷酸双向通透。利用该模型,我们研究了CMP - NeuAc、GDP - Fuc和UDP - Gal原位进入细胞内囊泡及在其中的利用情况。结果表明,CMP - NeuAc和GDP - Fuc以一种表明载体介导转运的方式进入囊泡(底物饱和曲线、底物类似物抑制、温度依赖性),并以未裂解的形式被截留。这导致这些前体在内腔池中形成,可被唾液酸转移酶和岩藻糖基转移酶进一步利用。CMP - NeuAc和GDP - Fuc内源性池的存在通过以下事实得以证明:当用去污剂破坏囊泡时,内源性糖核苷酸的释放会导致为测量糖基转移酶活性而添加的标记前体发生同位素稀释。相比之下,未检测到UDP - Gal的积累,这表明转运和转移反应是同时发生的事件。然而,用UDP 2',3'-二醛进行的实验表明,UDP - Gal不是通过半乳糖基转移酶作用穿过膜,而是通过一种独特的载体分子。

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