Grinstein S, Furuya W
Biochim Biophys Acta. 1986 Dec 19;889(3):301-9. doi: 10.1016/0167-4889(86)90192-8.
When stimulated, neutrophils undergo a complex change in cytoplasmic pH (pHi): an incipient acidification, followed by an alkalinization which is due to activation of Na+/H+ exchange. When the latter is inhibited by amiloride or by removal of extracellular Na+, the actual magnitude of the initial acidification can be fully appreciated. The acidification is thought to be of metabolic origin, but the precise origin of the H+ (equivalents) remains undefined. We used adenosine, a modulator of neutrophil responsiveness, to identify the source of metabolic acid in cells stimulated by either formylmethionylleucylphenylalanine (fMet-Leu-Phe) or 12-O-tetradecanoylphorbol 13-acetate (TPA). Pretreatment of the cells with adenosine inhibited the fMet-Leu-Phe-induced respiratory burst, but secretion of specific and azurophilic granules, as well as aggregation were unaffected. In fMet-Leu-Phe-treated cells, adenosine reduced the acidification recorded in Na+-free media, but had no effect on the activation of the Na+/H+ antiport. Adenosine had little or no effect on the TPA-induced responses, including the pHi changes. The respiratory burst, as well as the cytoplasmic acidification were also inhibited in parallel by pretreating the cells with 'islet-activating protein' from Bordetella pertussis. It was concluded that activation of the NADPH-oxidase and/or the associated stimulation of the hexose monophosphate shunt play a major role in the metabolic acidification of stimulated neutrophils.
受到刺激时,中性粒细胞的细胞质pH(pHi)会发生复杂变化:先是初始酸化,随后是碱化,这是由于Na⁺/H⁺交换激活所致。当用氨氯吡咪抑制后者或去除细胞外Na⁺时,就能充分认识到初始酸化的实际程度。酸化被认为源于代谢,但H⁺(当量)的确切来源仍不明确。我们使用腺苷(一种中性粒细胞反应性调节剂)来确定由甲酰甲硫氨酰亮氨酰苯丙氨酸(fMet-Leu-Phe)或12-O-十四烷酰佛波醇-13-乙酸酯(TPA)刺激的细胞中代谢酸的来源。用腺苷预处理细胞可抑制fMet-Leu-Phe诱导的呼吸爆发,但特异性和嗜天青颗粒的分泌以及聚集不受影响。在fMet-Leu-Phe处理的细胞中,腺苷降低了在无Na⁺培养基中记录到的酸化,但对Na⁺/H⁺反向转运体的激活没有影响。腺苷对TPA诱导的反应,包括pHi变化,几乎没有影响。用百日咳博德特氏菌的“胰岛激活蛋白”预处理细胞也能同时抑制呼吸爆发和细胞质酸化。得出的结论是,NADPH氧化酶的激活和/或相关的己糖磷酸旁路刺激在受刺激的中性粒细胞代谢酸化中起主要作用。