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佛波酯在自然杀伤、凝集素依赖性杀伤和抗体依赖性杀伤过程中对钙离子通量的调节

Phorbol ester regulation of Ca2+ flux during natural, lectin and antibody-dependent killing.

作者信息

Jondal M, Ng J, Patarroyo M, Broliden P A

出版信息

Immunology. 1986 Nov;59(3):347-52.

Abstract

Phorbol ester 12-O-tetradecanoylphorbol-13-acetate (TPA), an activator of protein kinase C, suppresses natural, lectin and antibody-dependent killing by normal human lymphocytes in short-term radioisotope release assays. Fifty percent inhibition of killing of lymphoid target cells was seen at approximately 5 ng/ml TPA and inhibition was further potentiated by the presence of monocytic cells. In contrast, TPA increased killing of K-562 erythroleukaemic cells by non-adherent NK cells with optimal activity around 1 ng/ml. Two anti-estrogenic drugs, tamoxifen and clomiphene, known to inhibit protein kinase C, gave near to complete inhibition of NK killing at concentrations 12 microM and 30 microM, respectively. Retinal, another protein kinase C inhibitor, inhibited both antibody-dependent killing and lectin-dependent killing. An influx of 45Ca2+ into the effector population was found during effector-target cell conjugation and this flux was suppressed at TPA concentrations similar to those that suppressed killing. The results suggest that killing depends on a co-ordinated activation of protein kinase C together with a channel-dependent calcium influx. TPA may suppress killing by a negative feedback effect of protein kinase C on the hydrolysis of inositol phospholipids, as demonstrated in many other systems, or through the down-regulation of cell surface receptors required for triggering of lysis.

摘要

佛波酯12 - O - 十四烷酰佛波醇 - 13 - 乙酸酯(TPA)是蛋白激酶C的激活剂,在短期放射性同位素释放试验中可抑制正常人淋巴细胞的天然杀伤、凝集素依赖性杀伤和抗体依赖性杀伤。在约5 ng/ml的TPA浓度下可观察到对淋巴样靶细胞杀伤的50%抑制,单核细胞的存在可进一步增强这种抑制作用。相反,TPA可增强非贴壁自然杀伤细胞对K - 562红白血病细胞的杀伤作用,最佳活性浓度约为1 ng/ml。两种已知可抑制蛋白激酶C的抗雌激素药物他莫昔芬和克罗米芬,分别在12 μM和30 μM浓度时几乎完全抑制自然杀伤细胞的杀伤作用。视网膜是另一种蛋白激酶C抑制剂,可抑制抗体依赖性杀伤和凝集素依赖性杀伤。在效应细胞与靶细胞结合过程中发现有45Ca2+流入效应细胞群体,且这种通量在与抑制杀伤作用相似的TPA浓度下受到抑制。结果表明,杀伤作用取决于蛋白激酶C的协同激活以及通道依赖性钙内流。TPA可能通过蛋白激酶C对肌醇磷脂水解的负反馈作用来抑制杀伤,这在许多其他系统中已得到证实,或者是通过下调触发裂解所需的细胞表面受体来实现。

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