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荧光CMP-唾液酸作为研究通透细胞中CMP-唾液酸载体特异性和糖缀合物唾液酸化的工具。

Fluorescent CMP-sialic acids as a tool to study the specificity of the CMP-sialic acid carrier and the glycoconjugate sialylation in permeabilized cells.

作者信息

Gross H J

机构信息

Institut für Biochemie II, Universität Heidelberg, Federal Republic of Germany.

出版信息

Eur J Biochem. 1992 Jan 15;203(1-2):269-75. doi: 10.1111/j.1432-1033.1992.tb19856.x.

Abstract

The specificity of the Golgi carrier for CMP-sialic-acids and the lumenal sialylation of glycoconjugates in mechanically permeabilized cells (semi-intact CHO 15B cells) was studied with CMP-activated fluorescent sialic acids as sensitive markers. Semi-intact cells represent a well-established cellular model for studies on the constitutive secretion pathway because the perforated plasma membrane allows membrane-impermeable CMP-sialic-acids to gain access to cellular organelles. The subcellular structures of semi-intact cells remain morphologically intact and hence synthetic CMP-sialic-acids can be assayed as substrates for the corresponding Golgi sugar-nucleotide transporter. The results prove that the CMP-sialic-acid carrier is able to translocate fluorescent CMP-glycosides, despite the bulky fluoresceinyl residue located at position C5 or C9 of the sialic-acid moiety; the data suggest a slightly higher affinity of the carrier for the C9-substituted CMP-glycoside, whereas the affinity of cellular sialyltransferases is fourfold higher for CMP-5-N-fluoresceinylaminoacetylneuraminic acid (5-FTIUNeuAc; 5-N-fluoresceinylaminoneuraminic acid). Using CMP-9-fluoresceinylthioureido-N-acetylneuraminic acid (CMP-9-FTIUNeuAc), an easy and sensitive fluorometric assay was established for the lumenal sialylation in semi-intact cells. Cellular proteins and gangliosides are both labelled by covalent incorporation of the fluorescent N-acetylneuraminic acid analogue. The assay allows rapid screening for small biomolecules or proteins that influence cellular sialyl transport and sialyl transfer; the lumenal fluorescence incorporation does not require ATP or cytosolic compounds. The suitability of fluorescent CMP-glycosides as markers for intracellular sialylation, proven in this paper, introduces the use of synthetic sialic acids for visualisation of cellular sialic acid pathways by fluorescence microscopy. Based on the data presented here, specific CMP-N-acetylneuraminic-acid analogues can be produced and used for the characterization of the Golgi CMP-sialic-acid carrier.

摘要

以CMP激活的荧光唾液酸作为敏感标记,研究了高尔基体载体对CMP - 唾液酸的特异性以及机械通透细胞(半完整CHO 15B细胞)中糖缀合物的腔内唾液酸化。半完整细胞是研究组成型分泌途径的成熟细胞模型,因为穿孔的质膜允许膜不可渗透的CMP - 唾液酸进入细胞器。半完整细胞的亚细胞结构在形态上保持完整,因此合成的CMP - 唾液酸可作为相应高尔基体糖核苷酸转运体的底物进行测定。结果证明,尽管唾液酸部分的C5或C9位存在庞大的荧光素残基,CMP - 唾液酸载体仍能够转运荧光CMP - 糖苷;数据表明载体对C9 - 取代的CMP - 糖苷的亲和力略高,而细胞唾液酸转移酶对CMP - 5 - N - 荧光素氨基乙酰神经氨酸(5 - FTIUNeuAc;5 - N - 荧光素氨基神经氨酸)的亲和力高四倍。使用CMP - 9 - 荧光素硫脲基 - N - 乙酰神经氨酸(CMP - 9 - FTIUNeuAc),建立了一种简便灵敏的荧光测定法,用于测定半完整细胞中的腔内唾液酸化。细胞蛋白和神经节苷脂都通过荧光N - 乙酰神经氨酸类似物的共价掺入而被标记。该测定法可快速筛选影响细胞唾液酸转运和唾液酸转移的小分子或蛋白质;腔内荧光掺入不需要ATP或胞质化合物。本文证明了荧光CMP - 糖苷作为细胞内唾液酸化标记物的适用性,引入了合成唾液酸用于通过荧光显微镜观察细胞唾液酸途径。基于本文提供的数据,可以生产特定的CMP - N - 乙酰神经氨酸类似物并用于高尔基体CMP - 唾液酸载体的表征。

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