Cheyette T E, Gross D J
Department of Biochemistry, University of Massachusetts, Amherst 01003.
Cell Regul. 1991 Oct;2(10):827-40. doi: 10.1091/mbc.2.10.827.
The A431 epidermoid carcinoma cell line responds to epidermal growth factor (EGF) stimulation with a number of rapid changes, including alterations in free cytosolic calcium ion concentration ([Ca2+]i). At the single cell level, these changes in [Ca2+]i are known to proceed after a clear lag phase subsequent to EGF stimulus (Gonzalez et al., 1988). The present study explores the dependence on EGF concentration of this early [Ca2+]i signal. High levels of EGF (9.0-4.3 nM) produce a [Ca2+]i spike followed by an elevation of [Ca2+]i above basal levels. The time of initiation of the spike varies from 5 to 9 s at the high dose and from 8 to 32 s at the low dose in cells that respond. A lower level of EGF (1.5 nM) produces [Ca2+]i oscillations with no prolonged elevation over basal [Ca2+]i. The initiation of response at this [EGF] ranges from 20 to 410 s. Intermediate stimulus levels generate [Ca2+]i responses that are kinetic admixtures of these limiting responses. A simple model based on the enzymatically amplified signal cascade from ligand binding through Ca2+ release or influx is examined. The model predicts a prolonged lag phase followed by a rapid increase in the [CA2+]i signal that compares favorably with the data reported here.
A431表皮癌细胞系对表皮生长因子(EGF)刺激会产生一系列快速变化,包括游离胞质钙离子浓度([Ca2+]i)的改变。在单细胞水平上,已知这些[Ca2+]i的变化在EGF刺激后的明显延迟期之后发生(冈萨雷斯等人,1988年)。本研究探讨了这种早期[Ca2+]i信号对EGF浓度的依赖性。高浓度的EGF(9.0 - 4.3 nM)会产生一个[Ca2+]i峰值,随后[Ca2+]i升高至基础水平之上。在有反应的细胞中,高剂量时峰值起始时间为5至9秒,低剂量时为8至32秒。较低浓度的EGF(1.5 nM)会产生[Ca2+]i振荡,且[Ca2+]i不会长时间高于基础水平。在此[EGF]浓度下反应起始时间为20至410秒。中等刺激水平会产生[Ca2+]i反应,这些反应是这些极限反应的动力学混合。研究了一个基于从配体结合到Ca2+释放或内流的酶促放大信号级联的简单模型。该模型预测会有一个延长的延迟期,随后[Ca2+]i信号迅速增加,这与这里报道的数据相当吻合。