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在离子载体莫能菌素存在的情况下,培养的软骨细胞会分泌硫酸化不足的蛋白聚糖。

Undersulfated proteoglycans are secreted by cultured chondrocytes in the presence of the ionophore monensin.

作者信息

Tajiri K, Uchida N, Tanzer M L

出版信息

J Biol Chem. 1980 Jul 10;255(13):6036-9.

PMID:6771262
Abstract

The monovalent ionophore, monensin, inhibits secretion of many different proteins from a wide variety of cells. The site of blockage is at the golgi complex. We have exposed chick embryo chondrocytes in suspension culture to monensin, at concentrations ranging from 10(-8) to 10(-6) M. At the higher concentrations, between 10(-7) and 10(-6) M, monensin inhibited secretion of type II procollagen, which accumulated in the chondrocytes. At these concentrations of the ionophore, proteoglycan synthesis was inhibited, as measured by radioactive serine incorporation into core proteins and by radioactive glucosamine or SO4 incorporation into glycosaminoglycans. However, at a monensin concentration of 3 x 10(-8) M, the incorporations of serine and glucosamine were close to normal while SO4 incorporation was at 30% of control values. The ratio of glucosamine to serine in pronase-released glycosaminoglycans from culture media was unaffected by 3 x 10(-8) M monensin but the sulfate to serine ratio decreased to 29% of control values. Examination of the glycosaminoglycans by gel filtration showed a progressive increase in Kav values as sulfation decreased. Undersulfation was demonstrated by radiochromatographic analysis of the digestion products following incubation with chondroitinase ABC. The composite results show that monensin interferes with sulfation of newly synthesized proteoglycans.

摘要

单价离子载体莫能菌素可抑制多种细胞分泌许多不同的蛋白质。其阻断部位在高尔基体复合体。我们将悬浮培养的鸡胚软骨细胞暴露于浓度范围为10^(-8)至10^(-6) M的莫能菌素中。在较高浓度(10^(-7)至10^(-6) M)下,莫能菌素抑制了II型前胶原的分泌,该蛋白在软骨细胞中积累。在这些离子载体浓度下,通过放射性丝氨酸掺入核心蛋白以及放射性葡糖胺或硫酸根掺入糖胺聚糖来测定,蛋白聚糖的合成受到抑制。然而,在莫能菌素浓度为3×10^(-8) M时,丝氨酸和葡糖胺的掺入接近正常,而硫酸根掺入为对照值的30%。来自培养基的链霉蛋白酶释放的糖胺聚糖中葡糖胺与丝氨酸的比例不受3×10^(-8) M莫能菌素的影响,但硫酸根与丝氨酸的比例降至对照值的29%。通过凝胶过滤对糖胺聚糖进行检测,结果显示随着硫酸化程度降低,Kav值逐渐增加。用软骨素酶ABC孵育后的消化产物经放射色谱分析证实存在硫酸化不足。综合结果表明,莫能菌素会干扰新合成蛋白聚糖的硫酸化过程。

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