Erdahl W L, Chapman C J, Taylor R W, Pfeiffer D R
Department of Medical Biochemistry, Ohio State University, Columbus 43210, USA.
Biophys J. 1995 Dec;69(6):2350-63. doi: 10.1016/S0006-3495(95)80104-9.
Phospholipid vesicles loaded with Quin-2 and 2',7'-bis(2-carboxyethyl)-5(6)-carboxyfluorescein (BCECF) have been used to investigate the effects of pH conditions on Ca2+ transport catalyzed by ionophores A23187, 4-BrA23187, and ionomycin. At an external pH of 7.0, a delta pH (inside basic) of 0.4-0.6 U decreases the rate of Ca2+ transport into the vesicles by severalfold under some conditions. The apparent extent of transport is also decreased. In contrast, raising the pH by 0.4-0.6 U in the absence of a delta pH increases both of these parameters, although by smaller factors. The relatively large effects of a delta pH on the transport properties of Ca2+ ionophores seem to reflect a partial equilibration of the transmembrane ionophore distribution with the H+ concentration gradient across the vesicle membrane. This unequal distribution of ionophore can cause a very slow or incomplete ionophore-dependent equilibration of delta pCa with delta pH. A second factor of less certain origin retards full equilibration of delta pCa when delta pH = 0. These findings call into question several ionophore-based methods that are used to investigate the regulatory activities of Ca2+ and other divalent cations in biological systems. Notable among these are the null-point titration method for determining the concentration of free cations within cells and the use of ionophores plus external cation buffers to calibrate intracellular cation indicators. The present findings also indicate that the transport mode of Ca2+ ionophores is more strictly electroneutral than was thought, based upon previous studies.
装载有喹啉 - 2和2',7'-双(2 - 羧乙基)-5(6)-羧基荧光素(BCECF)的磷脂囊泡已被用于研究pH条件对离子载体A23187、4 - BrA23187和离子霉素催化的Ca2+转运的影响。在外部pH为7.0时,在某些条件下,0.4 - 0.6 U的ΔpH(内部碱性)会使Ca2+转运到囊泡中的速率降低几倍。转运的表观程度也会降低。相比之下,在没有ΔpH的情况下将pH提高0.4 - 0.6 U会增加这两个参数,尽管增加的幅度较小。ΔpH对Ca2+离子载体转运特性的相对较大影响似乎反映了跨膜离子载体分布与跨囊泡膜的H+浓度梯度的部分平衡。离子载体的这种不均匀分布会导致ΔpCa与ΔpH之间依赖离子载体的平衡非常缓慢或不完全。当ΔpH = 0时,另一个来源不太确定的因素会阻碍ΔpCa的完全平衡。这些发现对几种用于研究生物系统中Ca2+和其他二价阳离子调节活性的基于离子载体的方法提出了质疑。其中值得注意的是用于确定细胞内游离阳离子浓度的零点滴定法以及使用离子载体加外部阳离子缓冲剂来校准细胞内阳离子指示剂的方法。目前的研究结果还表明,基于先前的研究,Ca2+离子载体的转运模式比人们认为得更严格地呈电中性。