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在缺乏半乳糖基转移酶I的中国仓鼠卵巢细胞突变体中对硫酸软骨素和硫酸乙酰肝素生物合成的抑制作用

Inhibition of chondroitin and heparan sulfate biosynthesis in Chinese hamster ovary cell mutants defective in galactosyltransferase I.

作者信息

Esko J D, Weinke J L, Taylor W H, Ekborg G, Rodén L, Anantharamaiah G, Gawish A

出版信息

J Biol Chem. 1987 Sep 5;262(25):12189-95.

PMID:2957376
Abstract

We have isolated five Chinese hamster ovary cell mutants defective in galactosyltransferase I (UDP-D-galactose:xylose beta-1,4-D-galactosyltransferase) and studied the effect of p-nitrophenyl-beta-D-xyloside supplementation on glycosaminoglycan biosynthesis in the mutant cells. Assays of galactosyltransferase I showed that the mutants contained less than 2% of the enzyme activity present in wild-type cells, and enzyme activity was additive in mixtures of mutant and wild-type cell extracts, suggesting that the mutations most likely defined the structural gene encoding the enzyme. Cell hybridization studies showed that the mutations in all five strains were recessive and that the mutants belonged to the same complementation group. The mutants contained wild-type levels of xylosyltransferase (UDP-D-xylose:core protein (serine) beta-D-xylosyltransferase), lactose synthase (UDP-D-galactose:N-acetyl-glucosaminide beta-1,4-D-galactosyltransferase), and lactosylceramide synthase (UDP-D-galactose:glucosylceramide beta-1,4-D-galactosyltransferase). Their sensitivity to lectin-mediated cytotoxicity was virtually identical to that of the wild-type, indicating that there were no gross alterations in glycoprotein or glycolipid compositions. Anion-exchange high performance liquid chromatography of 35S-glycosaminoglycans from one of the galactosyltransferase I-deficient mutants showed a dramatic reduction in both heparan sulfate and chondroitin sulfate, demonstrating that galactosyltransferase I is responsible for the formation of both glycosaminoglycans in intact cells. Surprisingly, the addition of 1 mM-p-nitrophenyl-beta-D-xyloside, a substrate for galactosyltransferase I, restored glycosaminoglycan synthesis in mutant cells. This finding suggested that another galactosyltransferase, possibly lactose synthase, can transfer galactose to xylose in intact cells.

摘要

我们分离出了五个在半乳糖基转移酶I(UDP-D-半乳糖:木糖β-1,4-D-半乳糖基转移酶)方面存在缺陷的中国仓鼠卵巢细胞突变体,并研究了对硝基苯基-β-D-木糖苷补充剂对突变体细胞中糖胺聚糖生物合成的影响。半乳糖基转移酶I的测定表明,这些突变体所含的酶活性不到野生型细胞中酶活性的2%,并且在突变体和野生型细胞提取物的混合物中酶活性具有加和性,这表明这些突变很可能界定了编码该酶的结构基因。细胞杂交研究表明,所有五个菌株中的突变都是隐性的,并且这些突变体属于同一互补群。这些突变体含有野生型水平的木糖基转移酶(UDP-D-木糖:核心蛋白(丝氨酸)β-D-木糖基转移酶)、乳糖合酶(UDP-D-半乳糖:N-乙酰葡糖胺β-1,4-D-半乳糖基转移酶)和乳糖基神经酰胺合酶(UDP-D-半乳糖:葡糖基神经酰胺β-1,4-D-半乳糖基转移酶)。它们对凝集素介导的细胞毒性的敏感性与野生型几乎相同,表明糖蛋白或糖脂组成没有明显改变。对来自其中一个半乳糖基转移酶I缺陷突变体的35S-糖胺聚糖进行阴离子交换高效液相色谱分析表明,硫酸乙酰肝素和硫酸软骨素均显著减少,这表明半乳糖基转移酶I负责完整细胞中两种糖胺聚糖的形成。令人惊讶的是,添加1 mM对硝基苯基-β-D-木糖苷(半乳糖基转移酶I的一种底物)可恢复突变体细胞中的糖胺聚糖合成。这一发现表明,另一种半乳糖基转移酶,可能是乳糖合酶,能够在完整细胞中将半乳糖转移至木糖。

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