Regulation of protein kinase enzymatic activity in Jurkat T cells during oxidative stress uncoupled from protein tyrosine kinases: role of oxidative changes in protein kinase activation requirements and generation of second messengers.

Lymphokine and cytokine research Pub Date : 1994-12-01
R L Whisler, Y G Newhouse, L Beiqing, B K Karanfilov, M A Goyette, K V Hackshaw
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Abstract

Prior studies have suggested that intracellular phosphorylation events and cellular redox mechanisms may interact in regulating a variety of cellular functions, including the transcriptional activation of gene expression. Increased activity of transcriptional factors NF kappa B and AP1 has been described in cells exposed to oxidative stress and following the direct stimulation of protein kinase C (PKC) by phorbol diesters. However, the mechanisms that may contribute to redox regulation of PKC are unknown. We studied the expression of PKC activity and several second messengers in human Jurkat T cells exposed to oxidative stress in the form of H2O2. Micromolar concentrations of H2O2 rapidly induced increased cytosolic PKC enzymatic activity in Jurkat T cells that was associated with a marked arrest of cellular proliferation. The increase in cytosolic PKC activity in cells treated with H2O2 was accompanied by elevations in intracellular free calcium ([Ca2+]i), generation of inositol phosphates, and release of arachidonic acid. Functional studies showed that H2O2 enhancement of cytosolic PKC activity required phospholipase C activity but was not primarily mediated by arachidonic acid. The response of PKC to oxidative stress displayed a lack of Ca2+ dependence and was uncoupled from the activity of protein tyrosine kinases (PTK). Furthermore, the reduced activation requirements of PKC from cells treated with H2O2 were associated with shifts in elution profiles of PKC enzymatic activity after Mono-Q chromatography. These shifts appeared to represent intrinsic changes in the conformation of PKC induced by oxidative stress because western blotting failed to reveal any PKC cleavage products or reductions in native PKC alpha or beta. These findings indicate that oxidative regulation of intracellular events can intersect phosphorylation events mediated by PKC through the release of second messengers as well as direct changes in PKC activation requirements. Moreover, redox regulation of PKC is distinct from T cell receptor signaling in that the activity of PKC is uncoupled from the regulatory influences of PTK.

蛋白酪氨酸激酶解偶联氧化应激过程中Jurkat T细胞蛋白激酶酶活性的调控:氧化变化在蛋白激酶激活需求和第二信使生成中的作用
先前的研究表明,细胞内磷酸化事件和细胞氧化还原机制可能相互作用,调节多种细胞功能,包括基因表达的转录激活。转录因子NF κ B和AP1的活性增加已经在细胞暴露于氧化应激和直接刺激蛋白激酶C (PKC)后被描述。然而,PKC氧化还原调控的机制尚不清楚。我们研究了H2O2氧化应激下人类Jurkat T细胞中PKC活性和几种第二信使的表达。微摩尔浓度的H2O2迅速诱导Jurkat T细胞胞质PKC酶活性增加,这与细胞增殖的明显停滞有关。在H2O2处理的细胞中,胞质PKC活性的增加伴随着细胞内游离钙([Ca2+]i)的升高,肌醇磷酸盐的产生和花生四烯酸的释放。功能研究表明,H2O2增强胞质PKC活性需要磷脂酶C活性,但主要不是由花生四烯酸介导的。PKC对氧化应激的反应显示缺乏Ca2+依赖性,并且与蛋白酪氨酸激酶(PTK)的活性解耦。此外,H2O2处理的细胞对PKC的激活需求降低,与Mono-Q层析后PKC酶活性的洗脱谱的变化有关。这些变化似乎代表了氧化应激诱导的PKC构象的内在变化,因为western blotting未能揭示任何PKC切割产物或天然PKC α或β的减少。这些发现表明,细胞内事件的氧化调节可以通过第二信使的释放以及PKC激活需求的直接改变来交叉PKC介导的磷酸化事件。此外,PKC的氧化还原调控与T细胞受体信号传导不同,PKC的活性不受PTK的调控影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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