Pardo-Lopez Liliana, Zhang Mei, Liu Jie, Jiang Min, Possani Lourival D, Tseng Gea-Ny
Department of Physiology, Virginia Commonwealth University, Richmond, Virginia 23298, USA.
J Biol Chem. 2002 May 10;277(19):16403-11. doi: 10.1074/jbc.M200460200. Epub 2002 Feb 25.
The goals of this study are to investigate the mechanism and site of action whereby a human ether-a-go-go-related gene (HERG)-specific scorpion peptide toxin, ErgTx, suppresses HERG current. We apply cysteine-scanning mutagenesis to the S5-P and P-S6 linkers of HERG and examine the resulting changes in ErgTx potency. Data are compared with the characteristics of charybdotoxin (ChTx, or its analogs) binding to the Shaker channel. ErgTx binds to the outer vestibule of HERG but may not physically occlude the pore. In contrast to ChTx. Shaker interaction, elevating K (from 2 to 98 mm) does not affect ErgTx potency, and through-solution electrostatic forces only play a minor role in influencing ErgTx.HERG interaction. Cysteine mutations of three positions in S5-P linker (Trp-585, Gly-590, and Ile-593) and 1 position in P-S6 linker (Pro-632) induce profound changes in ErgTx binding (DeltaDeltaG > 2 kcal/mol). We propose that the long S5-P linker of the HERG channel forms an amphipathic alpha-helix that, together with the P-S6 linker, forms a hydrophobic ErgTx binding site. This study paves the way for future mutant cycle analysis of interacting residues in the ErgTx.HERG complex, which, in conjunction with NMR determination of the ErgTx solution structure, will yield information about the topology of HERG's outer vestibule.
本研究的目的是探究人醚 - 去极化相关基因(HERG)特异性蝎毒肽毒素ErgTx抑制HERG电流的作用机制和作用位点。我们对HERG的S5 - P和P - S6连接子进行半胱氨酸扫描诱变,并检测由此导致的ErgTx效力变化。将数据与蝎毒素(ChTx或其类似物)与Shaker通道结合的特性进行比较。ErgTx结合于HERG的外前庭,但可能并未从物理上堵塞孔道。与ChTx - Shaker相互作用不同,升高[K](o)(从2 mM至98 mM)并不影响ErgTx的效力,且溶液中的静电力在影响ErgTx - HERG相互作用方面仅起次要作用。S5 - P连接子中三个位置(Trp - 585、Gly - 590和Ile - 593)以及P - S6连接子中一个位置(Pro - 632)的半胱氨酸突变会引起ErgTx结合的显著变化(ΔΔG>2 kcal/mol)。我们提出,HERG通道的长S5 - P连接子形成一个两亲性α - 螺旋,该螺旋与P - S6连接子一起形成一个疏水的ErgTx结合位点。本研究为未来对ErgTx - HERG复合物中相互作用残基进行突变循环分析铺平了道路,这与通过核磁共振确定ErgTx的溶液结构相结合,将产生有关HERG外前庭拓扑结构的信息。