Ben-Hail Danya, Shoshan-Barmatz Varda
Department of Life Sciences and the National Institute for Biotechnology in the Negev, Ben-Gurion University of the Negev, Beer-Sheva 84105, Israel.
Cold Spring Harb Protoc. 2014 Jan 1;2014(1):100-5. doi: 10.1101/pdb.prot073148.
The functional properties of purified voltage-dependent anion-selective channel protein 1 (VDAC1) have been examined in reconstituted systems based on artificially prepared phospholipid bilayers. The most widespread method for the characterization of the pore-forming activity of the mitochondrial VDAC1 protein requires reconstitution of the channel activity into a planar lipid bilayer (PLB) that separates two aqueous compartments. This system is able to produce a refined and large set of information on channel activity. The activity of the channel is reflected in the flow of ions (i.e., current) through a membrane that otherwise represents a barrier to ion flow. The setup thus requires the use of purified protein and a source of continuous current, as well as a sophisticated detector system able to amplify and record low, picoamper-level currents. This system is so efficient that the activity of even a single channel can be detected, allowing for study of VDAC1 at the molecular level.
基于人工制备的磷脂双层构建的重组系统,已对纯化的电压依赖性阴离子选择性通道蛋白1(VDAC1)的功能特性进行了研究。表征线粒体VDAC1蛋白成孔活性最广泛使用的方法,是将通道活性重组到分隔两个水相区室的平面脂质双层(PLB)中。该系统能够产生有关通道活性的精细且大量的信息。通道的活性通过离子流(即电流)穿过原本对离子流起屏障作用的膜来体现。因此,该装置需要使用纯化的蛋白和连续电流源,以及能够放大和记录低至皮安级电流的精密检测系统。该系统效率极高,甚至单个通道的活性都能被检测到,从而能够在分子水平上研究VDAC1。