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Synthesis of 35S-labelled macromolecules by polymorphonuclear neutrophils. Evidence for the production of 35Ssulphite which can modify both endogenous and exogenous proteins.

机译:多形核中性粒细胞合成35S标记的大分子。生产35S亚硫酸盐的证据可以同时修饰内源性蛋白质和外源性蛋白质。

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摘要

The incorporation of [35S]sulphate into macromolecules by rabbit peritoneal polymorphonuclear neutrophils (PMN) in vitro revealed that two major groups of 35S-labelled macromolecules were synthesized by these cells. The first group did not bind to anion-exchange columns at pH 6.0 and contained 60-80% of the total incorporated radiolabel. The second group did bind to anion-exchange columns at pH 6.0 and eluted as a single peak of radioactivity at an ionic strength characteristic of sulphated proteoglycans; it accounted for the remaining incorporated radiolabel. Analysis of this material on Sepharose CL-6B demonstrated that 35S-labelled macromolecules isolated from the cell extract migrated with Kav. of 0.36, while corresponding material isolated from the medium migrated with Kav. of 0.51. When subjected to electrophoresis on SDS/polyacrylamide gels the intact proteoglycan had a molecular mass of approx. 90 kDa and yielded two core proteins of molecular mass 31 kDa and 28 kDa after digestion with chondroitinase ABC. The peak of labelled macromolecules which did not bind to the anion-exchange column was found, by SDS/PAGE, to comprise 35S-labelled proteins of various molecular masses. The 35S label was displaced from this fraction by treatment with 0.1 M-sodium sulphite, suggesting that the radiolabel was in the form of an S-sulpho sulphite derivative. Using the sulphite-trapping agents N-2,4-dinitroanilinomaleimide and cyst(e)ine, [35S]sulphite was detected in the incubation medium of PMN, indicating that these cells were able to synthesize [35S]sulphite from [35S]sulphate. The release of [35S]sulphite from neutrophil cultures was calculated to be 78 pmol/h per 10(6) cells. When exogenous proteins were included in the incubation medium of cell cultures, the [35S]sulphite reacted with these proteins to form a stable 35S-labelled conjugate.
机译:兔腹膜多形核中性粒细胞(PMN)体外将[35S]硫酸盐掺入大分子中显示,这些细胞合成了两大类35S标记的大分子。第一组在pH 6.0下不与阴离子交换柱结合,占总掺入放射性标记的60-80%。第二组在pH 6.0时确实与阴离子交换柱结合,并以硫酸化蛋白聚糖的离子强度特征在放射性峰上被洗脱。它占了剩余的并入放射性标记。在Sepharose CL-6B上对该材料进行的分析表明,从细胞提取物中分离出的35S标记的大分子随Kav迁移。为0.36,而从培养基中分离出的相应物质用Kav迁移。为0.51。当在SDS /聚丙烯酰胺凝胶上进行电泳时,完整的蛋白聚糖的分子量大约为1。用软骨素酶ABC消化后,得到90 kDa的蛋白,产生了分子量分别为31 kDa和28 kDa的两种核心蛋白。通过SDS / PAGE发现未结合至阴离子交换柱的标记的大分子的峰包含35S标记的各种分子量的蛋白质。通过用0.1 M亚硫酸钠处理将35S标记物从该馏分中置换出来,表明放射性标记物为S-亚硫酸盐衍生物的形式。使用亚硫酸盐捕集剂N-2,4-二硝基苯胺基马来酰亚胺和胱氨酸(e),在PMN的孵育培养基中检测到[35S]亚硫酸盐,表明这些细胞能够从[35S]硫酸盐合成[35S]亚硫酸盐。从中性粒细胞培养物中释放的[35S]亚硫酸盐的计算为每10(6)个细胞78 pmol / h。当细胞培养的培养基中包含外源蛋白质时,[35S]亚硫酸盐与这些蛋白质反应形成稳定的35S标记的结合物。

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