Martínez-Zaguilán R, Martínez G M, Lattanzio F, Gillies R J
Department of Biochemistry, University of Arizona College of Medicine, Tucson 85724.
Am J Physiol. 1991 Feb;260(2 Pt 1):C297-307. doi: 10.1152/ajpcell.1991.260.2.C297.
Upon cell stimulation with hormones and other mitogens, a variety of biochemical and physiological responses occur within the first few minutes. Changes in both intracellular pH (pHin) and intracellular Ca2+ concentration ([Ca2+]in) are prominent and play a major role in the signal transduction mechanism leading to the physiological response, i.e., secretion, neurotransmission, proliferation, or differentiation. However, it is not clear whether these ions work independently in the activation pathway leading to a particular physiological response. The fluorescence characteristics of most Ca2+ indicators are pH sensitive, and quantitative estimates of [Ca2+]in cannot be made without knowledge of pHin. Thus it is desirable to have a technique to simultaneously monitor these two ions with relatively high time resolution. Here we have developed experimental conditions that allow us to use optimum emission conditions for a pH fluorescent indicator SNARF-1 and optimum excitation conditions for the Ca2+ indicator fura-2. The fluorescence spectra of these compounds are sufficiently different to allow simultaneous measurement of pH and Ca2+ both in vitro and in situ. We have observed simultaneous changes in both pHin and [Ca2+]in in BALB/c 3T3 cells on treatment with the nonfluorescent Ca2+ ionophore 4-bromo-A23187. This temporal relationship between pHin and Ca2+ gives further credence to the interrelationship between these two second messengers in the expression of physiological responses.
在用激素和其他促分裂原刺激细胞后,最初几分钟内会发生各种生化和生理反应。细胞内pH值(pHin)和细胞内Ca2+浓度([Ca2+]in)的变化都很显著,并在导致生理反应(即分泌、神经传递、增殖或分化)的信号转导机制中起主要作用。然而,尚不清楚这些离子在导致特定生理反应的激活途径中是否独立起作用。大多数Ca2+指示剂的荧光特性对pH敏感,在不知道pHin的情况下无法对[Ca2+]in进行定量估计。因此,需要一种能够以相对高的时间分辨率同时监测这两种离子的技术。在这里,我们开发了实验条件,使我们能够为pH荧光指示剂SNARF-1使用最佳发射条件,为Ca2+指示剂fura-2使用最佳激发条件。这些化合物的荧光光谱差异足够大,能够在体外和原位同时测量pH和Ca2+。我们在用非荧光Ca2+离子载体4-溴-A23187处理BALB/c 3T3细胞时观察到了pHin和[Ca2+]in的同时变化。pHin和Ca2+之间的这种时间关系进一步证明了这两种第二信使在生理反应表达中的相互关系。