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首页> 外文期刊>The Journal of Experomental Medicine >Fc gamma R(CD16) interaction with ligand induces Ca2+ mobilization and phosphoinositide turnover in human natural killer cells. Role of Ca2+ in Fc gamma R(CD16)-induced transcription and expression of lymphokine genes.
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Fc gamma R(CD16) interaction with ligand induces Ca2+ mobilization and phosphoinositide turnover in human natural killer cells. Role of Ca2+ in Fc gamma R(CD16)-induced transcription and expression of lymphokine genes.

机译:FcγR(CD16)与配体的相互作用在人类自然杀伤细胞中诱导Ca2 +动员和磷酸肌醇更新。 Ca2 +在FcγR(CD16)诱导的淋巴因子基因转录和表达中的作用。

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In this study, we present evidence that interaction of Fc gamma R(CD16) with ligands (immune complexes or anti-CD16 antibodies) induces a rapid rise in [Ca2+]i and fast production of both inositol 1,4,5 triphosphate (IP3) and IP4 in homogeneous NK cell preparations. Part of the initial [Ca2+]i rise observed upon stimulation of NK cells with either anti-CD16 antibodies alone or after their crosslinking at the cell membrane depends on Ca2+ mobilization from intracellular stores, but sustained [Ca2+]i levels are maintained, after the initial spike, through influx of extracellular Ca2+. The [Ca2+]i rise is mediated, at least in part, by increases in IP3 after receptor-induced hydrolysis of membrane polyphosphoinositides (PPI). The role of extracellular Ca2+ in Fc gamma R(CD16)-dependent induction of lymphokine gene expression has been tested by evaluating production, mRNA accumulation and transcription of IFN-gamma and TNF in NK cells stimulated with Fc gamma R(CD16) ligands and/or rIL-2 in the presence of EGTA. Under these conditions, accumulation and transcription of both IFN-gamma and TNF mRNA induced by CD16 ligands, but not that induced by rIL-2, is completely abolished and neither cytokine can be detected at significant levels in the supernatant fluids of cells so treated. These data confirm that NK cell activation by specific ligands occurs through mechanisms distinct from those induced by IL-2, and indicate that extracellular Ca2+ represents a stringent requirement for cytokine production induced in NK cells through specific (Fc gamma R) stimulation. Our data also indicate that the [Ca2+]i rise induced upon Fc gamma R(CD16) crosslinking, though necessary, is not sufficient per se to induce activation of lymphokine genes, compatible with the hypothesis that Fc gamma R(CD16) crosslinking generates additional transducing signals that synergize with IL-2 to maximally activate NK cells.
机译:在这项研究中,我们提供证据表明FcγR(CD16)与配体(免疫复合物或抗CD16抗体)的相互作用诱导[Ca2 +] i的快速升高和肌醇1,4,5三磷酸(IP3)的快速产生)和IP4(均质NK细胞制剂中)。单独使用抗CD16抗体或在细胞膜上交联后刺激NK细胞时观察到的部分初始[Ca2 +] i升高取决于细胞内储存物中Ca2 +的动员,但在最初的峰值是通过细胞外Ca2 +的流入。在受体诱导的膜多磷酸肌醇(PPI)水解后,IP3的增加至少部分地介导了[Ca2 +] i的升高。通过评估FcγR(CD16)配体和/或刺激的NK细胞中IFN-γ和TNF的产生,mRNA积累和转录,测试了细胞外Ca2 +在FcγR(CD16)依赖性淋巴因子基因表达中的作用。或在EGTA存在下的rIL-2。在这些条件下,完全消除了CD16配体诱导的IFN-γ和TNF mRNA的积累和转录,而不是rIL-2诱导的积累和转录,并且在如此处理的细胞上清液中均未检测到显着水平的细胞因子。这些数据证实特定配体激活NK细胞是通过与IL-2诱导的机制不同的机制发生的,并且表明细胞外Ca2 +代表了通过特异性(Fc gamma R)刺激在NK细胞中诱导的细胞因子产生的严格要求。我们的数据还表明,FcγR(CD16)交联引起的[Ca2 +] i升高,尽管有必要,但其本身不足以诱导淋巴因子基因的激活,这与FcγR(CD16)交联产生额外假说的假设相符。与IL-2协同作用以最大程度激活NK细胞的信号转导。

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