Maki Bruce A, Cummings Kirstie A, Paganelli Meaghan A, Murthy Swetha E, Popescu Gabriela K
Graduate Program in Neuroscience, SMBS, University at Buffalo, SUNY.
Department of Biochemistry, SMBS, University at Buffalo, SUNY.
J Vis Exp. 2014 Jun 9(88):51629. doi: 10.3791/51629.
Ion channel proteins are universal devices for fast communication across biological membranes. The temporal signature of the ionic flux they generate depends on properties intrinsic to each channel protein as well as the mechanism by which it is generated and controlled and represents an important area of current research. Information about the operational dynamics of ion channel proteins can be obtained by observing long stretches of current produced by a single molecule. Described here is a protocol for obtaining one-channel cell-attached patch-clamp current recordings for a ligand gated ion channel, the NMDA receptor, expressed heterologously in HEK293 cells or natively in cortical neurons. Also provided are instructions on how to adapt the method to other ion channels of interest by presenting the example of the mechano-sensitive channel PIEZO1. This method can provide data regarding the channel's conductance properties and the temporal sequence of open-closed conformations that make up the channel's activation mechanism, thus helping to understand their functions in health and disease.
离子通道蛋白是跨生物膜进行快速通讯的通用装置。它们产生的离子通量的时间特征取决于每个通道蛋白的固有特性及其产生和控制机制,这是当前研究的一个重要领域。通过观察单个分子产生的长时间电流,可以获得有关离子通道蛋白操作动力学的信息。本文描述了一种用于在异源表达于HEK293细胞或天然表达于皮质神经元中的配体门控离子通道——NMDA受体上获得单通道细胞贴附式膜片钳电流记录的方案。还通过以机械敏感通道PIEZO1为例,提供了如何将该方法应用于其他感兴趣的离子通道的说明。该方法可以提供有关通道电导特性以及构成通道激活机制的开闭构象时间序列的数据,从而有助于理解它们在健康和疾病中的功能。