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中性粒细胞呼吸爆发的激活需要细胞内和细胞外钙。

Activation of the neutrophil respiratory burst requires both intracellular and extracellular calcium.

作者信息

Kim-Park W K, Moore M A, Hakki Z W, Kowolik M J

机构信息

Indiana University, Department of Oral Biology, Indianapolis 46202-5186, USA.

出版信息

Ann N Y Acad Sci. 1997 Dec 15;832:394-404. doi: 10.1111/j.1749-6632.1997.tb46267.x.

Abstract

Activation of neutrophil oxidases, including NADPH oxidase, is Ca2+ dependent. The aim of this study was to determine the roles of intra- and extracellular Ca2+, leading to generation of the respiratory burst, as monitored by luminol-dependent chemiluminescence (CL). All results were recorded as integrals (millivolt.min) and compared by a two-tail Student's t test. Preincubation of cells with chelators of intra- or extracellular Ca2+ inhibited N-Formyl-Met-Leu-Phe (FMLP)-stimulated burst activity (p < 0.01). In contrast, stimulation by phorbol myristate acetate (PMA), while inhibited by extracellular Ca2+ chelation with EGTA (p < 0.001), was potentiated by intracellular Ca2+ chelation with BAPTA (p < 0.01). This suggests that the protein kinase C (PKC)-mediated burst may be diminished by intracellular Ca(2+)-dependent phosphatase. A selective inhibitor of tyrosine phosphatase, sodium vanadate, potentiated CL generation by both FMLP and PMA, indicating a dominant phosphatase activation with transiently increased Ca2+, masking the kinase-mediated respiratory burst. The selective inhibitors of PKC or tyrosine kinase prevented PMA and vanadate/PMA stimulation (p < 0.005). Furthermore, the putative Ca2+ channel agonists glutamate (10(-5)M) and N-methyl-D-aspartate (NMDA) (10(-5)M) alone failed to influence CL output, but produced marked potentiation following pre-treatment with vanadate. Again this indicates a dominant activation of phosphatase triggered by the glutamate-mediated Ca2+ influx, so masking the kinase-dependent NADPH oxidase activity. A competitive antagonist of NMDA, AP7, significantly decreased vanadate-mediated CL in an EGTA-sensitive manner (p < 0.001). The data confirm a requirement for intra- and extracellular Ca2+ in neutrophil respiratory burst activation via the kinase/phosphatase cycle, and an agonist effect by NMDA within the Ca2+ cascade mechanism.

摘要

包括NADPH氧化酶在内的中性粒细胞氧化酶的激活是依赖Ca2+的。本研究的目的是确定细胞内和细胞外Ca2+在导致呼吸爆发产生中的作用,呼吸爆发通过鲁米诺依赖性化学发光(CL)进行监测。所有结果均记录为积分(毫伏·分钟),并通过双侧学生t检验进行比较。用细胞内或细胞外Ca2+螯合剂对细胞进行预孵育可抑制N-甲酰甲硫氨酰亮氨酰苯丙氨酸(FMLP)刺激的爆发活性(p<0.01)。相反,佛波酯肉豆蔻酸酯(PMA)刺激虽然被EGTA螯合细胞外Ca2+所抑制(p<0.001),但被BAPTA螯合细胞内Ca2+所增强(p<0.01)。这表明蛋白激酶C(PKC)介导的爆发可能被细胞内Ca(2+)依赖性磷酸酶减弱。酪氨酸磷酸酶的选择性抑制剂钒酸钠增强了FMLP和PMA两者的CL产生,表明在Ca2+短暂增加时磷酸酶的激活占主导地位,掩盖了激酶介导的呼吸爆发。PKC或酪氨酸激酶的选择性抑制剂可阻止PMA和钒酸钠/PMA刺激(p<0.005)。此外,假定的Ca2+通道激动剂谷氨酸(10(-⁵)M)和N-甲基-D-天冬氨酸(NMDA)(10(-⁵)M)单独未能影响CL输出,但在用钒酸钠预处理后产生明显增强作用。这再次表明由谷氨酸介导的Ca2+内流触发的磷酸酶激活占主导地位,从而掩盖了激酶依赖性NADPH氧化酶活性。NMDA的竞争性拮抗剂AP7以EGTA敏感的方式显著降低了钒酸钠介导的CL(p<0.001)。数据证实了通过激酶/磷酸酶循环激活中性粒细胞呼吸爆发时细胞内和细胞外Ca2+的必要性,以及在Ca2+级联机制中NMDA的激动剂作用。

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