Wang S, Morales M J, Liu S, Strauss H C, Rasmusson R L
Department of Medicine, Duke University Medical Center, Durham, NC 27708-0281, USA.
FEBS Lett. 1997 Nov 3;417(1):43-7. doi: 10.1016/s0014-5793(97)01245-3.
Rectification of HERG is due to a rapid inactivation process that has been labeled C-type inactivation and is believed to be due to closure of the external mouth of the pore. We examined the effects of mutation of extracellular residues that remove C-type inactivation on binding of the intracellularly acting methanesulfonanilide drug E-4031. Removal of inactivation through mutation reduced drug affinity by more than an order of magnitude. Elevation of [K+]o in the wild-type channel reduces channel affinity for E-4031. Elevation of [K+]o also interferes with the extracellular pore mouth closure associated with C-type inactivation through a 'foot in the door' mechanism. We examined the possibility that [K+]o elevation reduces drug binding through inhibition of C-type inactivation by comparing drug block in the wild-type and inactivation-removed mutant channels. Elevation of [K+]o decreased affinity in both channel constructs by a roughly equal amount. These results suggest that [K+]o alters drug binding affinity independently of its effects on C-type inactivation. They further suggest that inhibition of pore mouth closure by elevated [K+]o does not have same effect on drug affinity as mutations removing C-type inactivation.
HERG的整流作用归因于一种快速失活过程,该过程被标记为C型失活,并且据信是由于孔道外部开口的关闭所致。我们研究了去除C型失活的细胞外残基突变对细胞内作用的甲磺酰苯胺类药物E-4031结合的影响。通过突变去除失活会使药物亲和力降低超过一个数量级。野生型通道中[K⁺]o的升高会降低通道对E-4031的亲和力。[K⁺]o的升高还通过“脚踏入门”机制干扰与C型失活相关的细胞外孔道开口关闭。我们通过比较野生型和去除失活的突变型通道中的药物阻断情况,研究了[K⁺]o升高通过抑制C型失活来降低药物结合的可能性。[K⁺]o的升高使两种通道构建体中的亲和力降低的幅度大致相同。这些结果表明,[K⁺]o改变药物结合亲和力与其对C型失活的影响无关。它们进一步表明,[K⁺]o升高对孔道开口关闭的抑制作用对药物亲和力的影响与去除C型失活的突变不同。