Minta J O, Isenman D E
Department of Pathology, University of Toronto, Ontario, Canada.
Mol Immunol. 1987 Oct;24(10):1105-11. doi: 10.1016/0161-5890(87)90079-4.
The human monocyte-like cell line, U-937, was shown to synthesize and secrete C3 by hemolytic assays, radioimmunoassays and metabolic labeling experiments. The daily synthesis of antigenic C3 by unstimulated U-937 cells was low (about 3 ng/10(6) cells/24 hr) over a 3 day period. Induction of the cells to differentiate into macrophage-like cells with phorbol myristate acetate (PMA), resulted in 5-fold augmentation of C3 synthesis and secretion into the culture medium. Using a plaque assay for enumerating C3 production by single cells, approx. 5% of unstimulated U-937 cells were found to secrete hemolytically active C3. The proportion of C3-plaque forming cells was increased about 6-fold in PMA stimulated cells. The synthesis of C3 by U-937 cells was reversibly inhibited by cycloheximide. Data from SDS-PAGE analyses showed that U-937 cells synthesized C3 as a precursor polypeptide chain and was capable of processing this pro-molecule into the secreted two chain form. C3 antigen immunoprecipitated from stimulated U-937 cell lysates showed an increased amount of low mol. wt material as compared to C3 antigen immunoprecipitated from the lysates of unstimulated cells. This may be attributable to increased intracellular proteolytic activity in the PMA stimulated cells. The studies show that the U-937 cell line provides a useful model for studies on the synthesis and processing of complement proteins and the physiological regulation of complement production.
人单核细胞样细胞系U - 937通过溶血试验、放射免疫测定和代谢标记实验显示能合成并分泌C3。在3天的时间里,未受刺激的U - 937细胞每天合成的抗原性C3量较低(约3 ng/10⁶细胞/24小时)。用佛波酯(PMA)诱导细胞分化为巨噬细胞样细胞,导致C3合成增加5倍并分泌到培养基中。使用噬斑测定法来计数单细胞产生的C3,发现约5%的未受刺激的U - 937细胞分泌具有溶血活性的C3。在PMA刺激的细胞中,C3噬斑形成细胞的比例增加了约6倍。U - 937细胞合成C3可被环己酰亚胺可逆性抑制。SDS - PAGE分析数据表明,U - 937细胞合成的C3是一种前体多肽链,并且能够将这种前体分子加工成分泌型的双链形式。与从未受刺激细胞裂解物中免疫沉淀的C3抗原相比,从受刺激的U - 937细胞裂解物中免疫沉淀的C3抗原显示低分子量物质的量增加。这可能归因于PMA刺激细胞中细胞内蛋白水解活性的增加。这些研究表明,U - 937细胞系为补体蛋白的合成与加工以及补体产生的生理调节研究提供了一个有用的模型。