Molbaek Karen, Scharff-Poulsen Peter, Helix-Nielsen Claus, Klaerke Dan A, Pedersen Per Amstrup
Department of Veterinary and Clinical Animal Science, University of Copenhagen, Dyrlaegevej 100, Frederiksberg, DK-1870, Denmark.
Department of Biology, University of Copenhagen, Universitetsparken 13, Copenhagen OE, DK- 2100, Denmark.
Microb Cell Fact. 2015 Feb 7;14:15. doi: 10.1186/s12934-015-0193-9.
The hERG potassium channel is essential for repolarization of the cardiac action potential. Due to this vital function, absence of unintended and potentially life-threatening interactions with hERG is required for approval of new drugs. The structure of hERG is therefore one of the most sought-after. To provide purified hERG for structural studies and new hERG biomimetic platforms for detection of undesirable interactions, we have developed a hERG expression platform generating unprecedented amounts of purified and functional hERG channels. Full-length hERG, with or without a C-terminally fused green fluorescent protein (GFP) His 8-tag was produced from a codon-optimized hERG cDNA in Saccharomyces cerevisiae. Both constructs complemented the high potassium requirement of a knock-out Saccharomyces cerevisiae strain, indicating correct tetramer assembly in vivo. Functionality was further demonstrated by Astemizole binding to membrane embedded hERG-GFP-His 8 with a stoichiometry corresponding to tetramer assembly. The 156 kDa hERG-GFP protein accumulated to a membrane density of 1.6%. Fluorescence size exclusion chromatography of hERG-GFP-His 8 solubilized in Fos-Choline-12 supplemented with cholesteryl-hemisuccinate and Astemizole resulted in a monodisperse elution profile demonstrating a high quality of the hERG channels. hERG-GFP-His 8 purified by Ni-affinity chromatography maintained the ability to bind Astemizole with the correct stoichiometry indicating that the native, tetrameric structure was preserved. To our knowledge this is the first reported high-yield production and purification of full length, tetrameric and functional hERG. This significant breakthrough will be paramount in obtaining hERG crystal structures, and in establishment of new high-throughput hERG drug safety screening assays.
人乙醚 - 去极化相关基因(hERG)钾通道对于心脏动作电位的复极化至关重要。由于这一重要功能,新药获批需要避免与hERG发生意外且可能危及生命的相互作用。因此,hERG的结构是最受关注的结构之一。为了提供用于结构研究的纯化hERG以及用于检测不良相互作用的新型hERG仿生平台,我们开发了一种hERG表达平台,该平台可产生前所未有的大量纯化且具有功能的hERG通道。全长hERG,无论是否在C末端融合绿色荧光蛋白(GFP)His 8标签,均由酿酒酵母中密码子优化的hERG cDNA产生。两种构建体均补充了敲除酿酒酵母菌株对高钾的需求,表明在体内正确组装成四聚体。阿司咪唑与膜嵌入的hERG - GFP - His 8以对应于四聚体组装的化学计量比结合,进一步证明了其功能。156 kDa的hERG - GFP蛋白积累到膜密度的1.6%。用补充了胆固醇半琥珀酸酯和阿司咪唑的Fos - Choline - 12溶解的hERG - GFP - His 8进行荧光尺寸排阻色谱,得到单分散洗脱曲线,表明hERG通道质量很高。通过镍亲和色谱纯化的hERG - GFP - His 8保持了以正确化学计量比结合阿司咪唑的能力,表明保留了天然的四聚体结构。据我们所知,这是首次报道的全长、四聚体且具有功能的hERG的高产生产和纯化。这一重大突破对于获得hERG晶体结构以及建立新的高通量hERG药物安全筛选测定至关重要。