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大鼠卵巢颗粒细胞中细胞内半胱氨酸对磷酸腺苷磷酸硫酸中硫酸盐贡献的测定。

Measurement of contribution from intracellular cysteine to sulfate in phosphoadenosine phosphosulfate in rat ovarian granulosa cells.

作者信息

Imai Y, Yanagishita M, Hascall V C

机构信息

Bone Research Branch, National Institute of Dental Research, National Institutes of Health, Bethesda, Maryland 20892.

出版信息

Arch Biochem Biophys. 1994 Aug 1;312(2):392-400. doi: 10.1006/abbi.1994.1324.

Abstract

Synthesis of the large dermatan sulfate (DS) proteoglycan by rat ovarian granulosa cells was studied using metabolic radiolabel precursors in culture media with varying concentrations of environmental sulfate (20-800 microM) and cysteine (130 and 650 microM). Experiments using [3H]glucosamine and [35S]sulfate showed that the average size of the DS chains and the rate of DS proteoglycan synthesis were independent of the sulfate and cysteine concentrations in the medium. Experiments with [35S]cysteine were then used to determine the contribution that metabolic conversion of cysteine sulfur to sulfate makes to the 3'-phosphoadenosine 5'-phosphosulfate (PAPS) pool which provides the substrate for sulfoester formation in DS synthesis. When 35S in cysteine is metabolized into [35S]PAPS, the specific activity is reduced from that of the [35S]cysteine pool, by dilution with other sulfur sources such as extracellular sulfate, and this dilution factor directly reflects the contribution of cysteine to the PAPS pool. The decreases of 35S specific activity were measured under various sulfate-depleted and cysteine-supplemented conditions by comparing the specific activity of [35S]sulfate ester in the DS chains with that of [35S]cysteine residues in the core protein of the DS proteoglycan. The contribution of sulfur in cysteine to the intracellular PAPS pool was 0.03% in culture medium with normal sulfate (800 microM). Depleted environmental sulfate (20 microM) and increased cysteine supply (650 microM) only increased the sulfur contribution from cysteine to PAPS up to 0.74 and 1.5%, respectively, even though the DS chains were greatly undersulfated (55 and 82% of the control value). Thus, the source of sulfur in the intracellular pool of PAPS was mainly derived from environmental sulfate, and the contribution from cysteine was minimal in these cells.

摘要

利用培养基中的代谢放射性标记前体,在不同浓度的环境硫酸盐(20 - 800微摩尔)和半胱氨酸(130和650微摩尔)条件下,研究了大鼠卵巢颗粒细胞合成大型硫酸皮肤素(DS)蛋白聚糖的情况。使用[3H]葡糖胺和[35S]硫酸盐的实验表明,DS链的平均大小和DS蛋白聚糖的合成速率与培养基中的硫酸盐和半胱氨酸浓度无关。随后,用[35S]半胱氨酸进行实验,以确定半胱氨酸硫代谢转化为硫酸盐对3'-磷酸腺苷5'-磷酸硫酸(PAPS)池的贡献,PAPS池为DS合成中的硫酸酯形成提供底物。当半胱氨酸中的35S代谢为[35S]PAPS时,由于被其他硫源(如细胞外硫酸盐)稀释,其比活性会从[35S]半胱氨酸池的比活性降低,而这种稀释因子直接反映了半胱氨酸对PAPS池的贡献。通过比较DS链中[35S]硫酸酯的比活性与DS蛋白聚糖核心蛋白中[35S]半胱氨酸残基的比活性,在各种硫酸盐缺乏和半胱氨酸补充的条件下测量了35S比活性的降低。在正常硫酸盐(800微摩尔)的培养基中,半胱氨酸中的硫对细胞内PAPS池的贡献为0.03%。即使DS链的硫酸化程度大大降低(分别为对照值的55%和82%),环境硫酸盐缺乏(20微摩尔)和半胱氨酸供应增加(650微摩尔)也仅使半胱氨酸对PAPS的硫贡献分别增加至0.74%和1.5%。因此,细胞内PAPS池中的硫来源主要是环境硫酸盐,在这些细胞中半胱氨酸的贡献最小。

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