Korchak H M, Wilkenfeld C, Rich A M, Radin A R, Vienne K, Rutherford L E
J Biol Chem. 1984 Jun 25;259(12):7439-45.
Activated neutrophils aggregate, generate superoxide (O-2), and degranulate. The role of Ca as "second messenger" in neutrophil activation was examined using as agonist the chemotactic peptide fMet-Leu-Phe and its antagonist t-butoxycarbonyl-Phe-Leu-Phe-Leu-Phe to systematically vary the time of receptor occupancy. Release of enzymes from specific and azurophil granules showed a finite requirement for receptor occupancy; the cells were committed to full degranulation after 10 s of receptor-agonist interaction. In contrast, continuous occupation of the receptor by agonist was required to initiate and maintain O-2 generation and aggregation. Cytosolic Ca ( Quin2 fluorescence) increased immediately in response to fMet-Leu-Phe, requiring less than 2 s of agonist-receptor interaction to initiate an optimal response. Mobilization of membrane-associated Ca (chlorotetracycline fluorescence) also demonstrated a finite time requirement; the cells were fully committed after 10 s of agonist-receptor interaction. Increased Ca permeability (45Ca uptake) was fully launched after 15 s of agonist-receptor interaction. The data indicate that Ca movements ( quin2 , chlorotetracycline fluorescence, 45Ca uptake) are both necessary and sufficient to account for degranulation by neutrophils activated by fMet-Leu-Phe. However, neutrophil aggregation and the generation and release of O-2 in response to the same stimulus require a further unknown factor(s) associated with receptor occupancy to maintain these responses.
活化的中性粒细胞会聚集、产生超氧化物(O₂⁻)并脱颗粒。使用趋化肽fMet-Leu-Phe作为激动剂及其拮抗剂叔丁氧羰基-Phe-Leu-Phe-Leu-Phe,系统地改变受体占据时间,研究了Ca作为中性粒细胞活化中“第二信使”的作用。从特异性颗粒和嗜天青颗粒中释放酶显示出对受体占据有一定的要求;在受体-激动剂相互作用10秒后,细胞就会完全脱颗粒。相比之下,需要激动剂持续占据受体才能启动并维持O₂⁻的产生和聚集。胞质Ca(Quin2荧光)对fMet-Leu-Phe的反应立即增加,激动剂-受体相互作用不到2秒就能引发最佳反应。膜相关Ca的动员(氯四环素荧光)也显示出有一定的时间要求;在激动剂-受体相互作用10秒后,细胞就完全确定会发生这种情况。激动剂-受体相互作用15秒后,Ca通透性增加(⁴⁵Ca摄取)完全启动。数据表明,Ca的移动(Quin2、氯四环素荧光、⁴⁵Ca摄取)对于fMet-Leu-Phe激活的中性粒细胞脱颗粒来说既是必要的也是充分的。然而,中性粒细胞的聚集以及对相同刺激产生和释放O₂⁻需要与受体占据相关的另一个未知因素来维持这些反应。