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蛋白激酶C的激活可抑制HPB-ALL T细胞中TCR介导的钙内流,但不影响三磷酸肌醇的产生。

Protein kinase C activation inhibits TCR-mediated calcium influx but not inositol trisphosphate production in HPB-ALL T cells.

作者信息

Shivnan E, Alexander D R

机构信息

Department of Immunology, Babraham Institute, Cambridge, United Kingdom.

出版信息

J Immunol. 1995 Feb 1;154(3):1146-56.

PMID:7822790
Abstract

The regulation by protein kinase C (PKC) of TCR-mediated changes in phosphoinositide metabolism and intracellular calcium ([Ca2+]i) was investigated in HPB-ALL T cells. Low concentrations (< 1 microgram/ml) of the anti-CD3 OKT3 mAb triggered large calcium signals but not detectable increase in D-myo-inositol 1,4,5-trisophate (IP3) production. CD3-CD4 coligation amplified the calcium signal twofold, compared with CD3 cross-linking alone, but this protocol also did not stimulate IP3 production. At higher OKT3 concentrations (> 2.5 micrograms/ml), IP3 production was detected but was not inhibited by activating PKC with phorbol ester. In contrast, PKC activation caused a marked inhibition (53 to 64%) of the CD3- or CD3-CD4-triggered calcium signals, but had only a small inhibitory effect (20 to 30%) on the release of intracellular Ca2+. PKC activation also inhibited by 47% calcium signals triggered by thapsigargin, an inhibition that was completely reversed by addition of the specific PKC inhibitor RO 31-8220 (1 microM). Addition of 1 microM RO 31-8220 caused a twofold stimulation of CD3-induced calcium signals. This effect was not mediated at the level of Ca2+ influx, because RO 31-8220 did not significantly increase thapsigargin-triggered calcium signals. However, RO 31-8220 did slightly increase the CD3-induced release of intracellular Ca2+, suggesting that amplification of Ca2+ influx may be secondary to increased release of Ca2+ from intracellular stores. Our results indicate that PKC regulates TCR-mediated changes in [Ca2+]i in HPB-ALL T cells by two distinct mechanisms. First, PKC activation causes a marked inhibition of Ca2+ influx by a mechanism independent of changes in IP3 production, possibly involving inhibition of ion channels. Second, PKC activity causes a small inhibition of intracellular Ca2+ release, most likely by promoting Ca2+ sequestration.

摘要

在HPB - ALL T细胞中研究了蛋白激酶C(PKC)对T细胞受体(TCR)介导的磷酸肌醇代谢和细胞内钙([Ca2+]i)变化的调节作用。低浓度(<1微克/毫升)的抗CD3 OKT3单克隆抗体触发了大量的钙信号,但未检测到D - 肌醇1,4,5 - 三磷酸(IP3)生成量的可检测增加。与单独的CD3交联相比,CD3 - CD4共刺激使钙信号放大了两倍,但该方案也未刺激IP3生成。在较高的OKT3浓度(>2.5微克/毫升)下,检测到了IP3生成,但佛波酯激活PKC并未抑制其生成。相反,PKC激活导致CD3或CD3 - CD4触发的钙信号显著抑制(53%至64%),但对细胞内Ca2+释放仅有较小的抑制作用(20%至30%)。PKC激活还抑制了毒胡萝卜素触发的钙信号的47%,加入特异性PKC抑制剂RO 31 - 8220(1微摩尔)可完全逆转这种抑制作用。加入1微摩尔RO 31 - 8220使CD3诱导的钙信号增强了两倍。这种效应不是在Ca2+内流水平介导的,因为RO 31 - 8220并未显著增加毒胡萝卜素触发的钙信号。然而,RO 31 - 8220确实略微增加了CD3诱导的细胞内Ca2+释放,表明Ca2+内流的增强可能继发于细胞内钙库中Ca2+释放的增加。我们的结果表明PKC通过两种不同机制调节HPB - ALL T细胞中TCR介导的[Ca2+]i变化。首先,PKC激活通过一种独立于IP3生成变化的机制显著抑制Ca2+内流,可能涉及离子通道的抑制。其次,PKC活性对细胞内Ca2+释放有较小的抑制作用,最可能是通过促进Ca2+螯合实现的。

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