Department of Biochemistry, University of Wisconsin-Madison, Madison, Wisconsin, USA.
Department of Molecular and Cellular Physiology, Stanford University School of Medicine, Stanford, California, USA.
J Biol Chem. 2021 Oct;297(4):101220. doi: 10.1016/j.jbc.2021.101220. Epub 2021 Sep 23.
Transport stoichiometry determination can provide great insight into the mechanism and function of ion-coupled transporters. Traditional reversal potential assays are a reliable, general method for determining the transport stoichiometry of ion-coupled transporters, but the time and material costs of this technique hinder investigations of transporter behavior under multiple experimental conditions. Solid-supported membrane electrophysiology (SSME) allows multiple recordings of liposomal or membrane samples adsorbed onto a sensor and is sensitive enough to detect transport currents from moderate-flux transporters that are inaccessible to traditional electrophysiology techniques. Here, we use SSME to develop a new method for measuring transport stoichiometry with greatly improved throughput. Using this technique, we were able to verify the recent report of a fixed 2:1 stoichiometry for the proton:guanidinium antiporter Gdx, reproduce the 1H:2Cl antiport stoichiometry of CLC-ec1, and confirm loose proton:nitrate coupling for CLC-ec1. Furthermore, we were able to demonstrate quantitative exchange of internal contents of liposomes adsorbed onto SSME sensors to allow multiple experimental conditions to be tested on a single sample. Our SSME method provides a fast, easy, general method for measuring transport stoichiometry, which will facilitate future mechanistic and functional studies of ion-coupled transporters.
转运化学计量测定可以深入了解离子耦联转运体的作用机制。传统的反转电位测定法是测定离子耦联转运体转运化学计量的可靠、通用方法,但该技术的时间和材料成本阻碍了在多种实验条件下对转运体行为的研究。固态支持膜电生理学(SSME)允许对吸附在传感器上的脂质体或膜样本进行多次记录,并且足够灵敏,可以检测到传统电生理学技术无法检测到的中等通量转运体的转运电流。在这里,我们使用 SSME 开发了一种新的方法,用于测量转运化学计量,具有大大提高的通量。使用这种技术,我们能够验证质子:胍离子反向转运体 Gdx 固定 2:1 化学计量比的最新报告,重现 CLC-ec1 的 1H:2Cl 反向转运化学计量比,并确认 CLC-ec1 对质子:硝酸盐的偶联较为松散。此外,我们能够证明吸附在 SSME 传感器上的脂质体内部内容物的定量交换,从而允许在单个样本上测试多种实验条件。我们的 SSME 方法提供了一种快速、简单、通用的测量转运化学计量的方法,这将有助于未来对离子耦联转运体的机制和功能研究。