Torres M, Coates T D
Blood. 1984 Oct;64(4):891-5.
Activation of human polymorphonuclear neutrophils (PMNs) by the chemotactic peptide N-formyl-methionyl-leucyl-phenylalanine (fMLP) leads to a transient increase in intracellular level of ionized calcium and an alteration of the plasma membrane permeability. Calcium has been proposed as a second messenger for activation of the PMN. Modulation of intracellular pools of calcium is of importance in the regulation of PMN activation. We have studied the changes in membrane-bound and cytoplasmic calcium in PMN and PMN devoid of granules and nucleus by quantifying changes in chlorotetracycline (CTC) and Quin 2 fluorescence and comparing their relation to O(2) release. Similar to PMN, PMN cytoplasts (PMN-CPs) produce equivalent amounts of O(2) in response to 10(-7) mol/L fMLP. The decrease in CTC fluorescence following fMLP stimulation is not significantly different in PMN-CP (-9.9% +/- 3.7%) from that observed in PMN (-12.7% +/- 2.33%), suggesting that the trigger pool of Ca++ is present in PMN-CPs. Although PMNs show a net increase in free Ca++ as measured by Quin 2, PMN-CPs display a lower sustained rise, which is totally abolished in the absence of external Ca++. PMN-CPs release O(2) efficiently in the absence of external Ca++ when stimulated with 10(-7) mol/L fMLP, whereas PMNs release significantly less O(2) under the same conditions. Our results suggest that a rapid rise in free Ca++, as monitored by Quin 2 fluorescence, is not required for expression of full activation of the oxidase system and release of O(2) from PMN-CPs.
趋化肽N-甲酰甲硫氨酰-亮氨酰-苯丙氨酸(fMLP)激活人多形核中性粒细胞(PMN)会导致细胞内游离钙离子水平短暂升高以及质膜通透性改变。钙被认为是激活PMN的第二信使。细胞内钙库的调节在PMN激活的调控中具有重要意义。我们通过量化氯四环素(CTC)和喹啉2荧光的变化并比较它们与O₂释放的关系,研究了PMN以及无颗粒和细胞核的PMN中膜结合钙和细胞质钙的变化。与PMN相似,PMN细胞质体(PMN-CPs)对10⁻⁷mol/L fMLP的反应会产生等量的O₂。fMLP刺激后,PMN-CP中CTC荧光的降低(-9.9%±3.7%)与PMN中观察到的降低(-12.7%±2.33%)无显著差异,这表明Ca²⁺的触发库存在于PMN-CPs中。尽管用喹啉2测量时PMN显示游离Ca²⁺净增加,但PMN-CPs显示出较低的持续升高,在没有外部Ca²⁺的情况下这种升高完全消失。当用10⁻⁷mol/L fMLP刺激时,PMN-CPs在没有外部Ca²⁺的情况下能有效释放O₂,而在相同条件下PMN释放的O₂明显较少。我们的结果表明,通过喹啉2荧光监测的游离Ca²⁺的快速升高对于氧化酶系统的完全激活表达以及PMN-CPs释放O₂并非必需。