Davies E V, Campbell A K, Hallett M B
Department of Surgery, University of Wales College of Medicine, Cardiff, U.K.
Immunology. 1994 May;82(1):57-62.
Although the mechanisms of Ca2+ signalling in neutrophils by certain chemotactic agents have been well characterized, the signalling by immune complexes is poorly understood. Here we demonstrate that immune complex stimulation, acting via Fc receptors, leads to repetitive Ca2+ spiking in neutrophils. Although the initial Ca2+ rise was the result of release of Ca2+ from intracellular stores, subsequent repetitive Ca2+ spikes resulted from transmembrane influx, as they were prevented by removal of extracellular Ca2+ and were accompanied by Mn2+ influx. The transmembrane Ca2+ spikes induced dramatic neutrophil cell shape changes. The Ca2+ spiking phase was inhibited by a phospholipase C (PLC) inhibitor, U73122, and removal of immune complex, but not by cytochalasin B. It was concluded that Ca2+ spiking was dependent upon the initial release of Ca2+ from an intracellular Ca2+ store, and driven by continued binding of immune complex, which triggered pulsatile changes in transmembrane influx.
尽管某些趋化因子在中性粒细胞中引发Ca2+信号传导的机制已得到充分表征,但免疫复合物引发的信号传导却知之甚少。在此我们证明,通过Fc受体起作用的免疫复合物刺激会导致中性粒细胞中出现重复性Ca2+尖峰。虽然最初的Ca2+升高是细胞内钙库释放Ca2+的结果,但随后的重复性Ca2+尖峰是由跨膜内流引起的,因为去除细胞外Ca2+可阻止其发生,并且伴随着Mn2+内流。跨膜Ca2+尖峰引起了中性粒细胞显著的细胞形态变化。Ca2+尖峰阶段受到磷脂酶C(PLC)抑制剂U73122以及去除免疫复合物的抑制,但不受细胞松弛素B的抑制。得出的结论是,Ca2+尖峰依赖于细胞内钙库中Ca2+的初始释放,并由免疫复合物的持续结合驱动,后者触发了跨膜内流的脉动变化。