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Cytolysis of nucleated cells by complement: cell death displays multi-hit characteristics.

机译:补体对有核细胞的细胞裂解作用:细胞死亡显示出多击特征。

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摘要

Lysis of nucleated cells by complement was studied to determine whether the lytic process by C5b-9 conforms to a one-hit mechanism as in the case of erythrocytes. Two nucleated cell lines, Molt 4 and U937, derived from human T lymphocytes and histiocytes, respectively, were employed as targets. The antibody-sensitized cells were used to develop the titration curves, measuring cell death as a function of limiting quantities of human C6 or C5,6 complex in the presence of an excess of other complement components. The cytolysis curves generated in both experiments were sigmoidal, in sharp contrast to the monotonic curves observed in lysis of erythrocytes treated similarly. The sigmoidal curves of cytolysis indicate a cooperative action of several molecules of C6 or acid-activated C5,6 complex, C(56)a. In contrast to the multi-hit characteristics of cytolysis, dose-response measurements of the release of 86Rb indicated that only one effective molecule of C6 per cell is required for assembly of a 86Rb-releasing channel. This divergence indicates that lysis requires formation of several channels or, alternatively, assembly of large channels that are formed by several molecules of C6. Because prior studies with erythrocyte ghosts have shown that only a single effective molecule of C6 is required for assembly of a transmembrane channel, regardless of size, we prefer to interpret the multi-hit characteristics of nucleated cell lysis as an indication of a multi-channel requirement, rather than channel enlargement.
机译:研究了补体对有核细胞的裂解作用,以确定C5b-9的裂解过程是否符合红细胞的一击机制。分别从人T淋巴细胞和组织细胞衍生的两种有核细胞系Molt 4和U937被用作靶标。抗体致敏的细胞用于建立滴定曲线,在过量其他补体成分存在下,测量细胞死亡与有限量的人C6或C5,6复合物的关系。在两个实验中产生的细胞溶解曲线是S形的,与在类似处理的红细胞的溶解中观察到的单调曲线形成鲜明对比。细胞溶解的S形曲线表明C6或酸激活的C5,6复合物C(56)a的几个分子的协同作用。与细胞溶解的多重打击特征相反,对86Rb释放的剂量反应测量表明,每个细胞仅需一个有效的C6分子即可组装86Rb释放通道。这种差异表明裂解需要形成多个通道,或者需要组装由多个C6分子形成的大通道。因为先前对红细胞鬼影的研究表明,跨膜通道的组装仅需一个有效的C6分子,而不管其大小如何,因此我们倾向于将有核细胞裂解的多击特性解释为多通道的指征需求,而不是渠道扩大。

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