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细胞外的钠在孔道外部位点与HERG通道相互作用。

Extracellular sodium interacts with the HERG channel at an outer pore site.

作者信息

Mullins Franklin M, Stepanovic Svetlana Z, Desai Reshma R, George Alfred L, Balser Jeffrey R

机构信息

Department of Pharmacology, Vanderbilt University School of Medicine, Nashville, TN 37232, USA.

出版信息

J Gen Physiol. 2002 Oct;120(4):517-37. doi: 10.1085/jgp.20028589.

Abstract

Most voltage-gated K(+) currents are relatively insensitive to extracellular Na(+) (Na(+)(o)), but Na(+)(o) potently inhibits outward human ether-a-go-go-related gene (HERG)-encoded K(+) channel current (Numaguchi, H., J.P. Johnson, Jr., C.I. Petersen, and J.R. Balser. 2000. Nat. Neurosci. 3:429-30). We studied wild-type (WT) and mutant HERG currents and used two strategic probes, intracellular Na(+) (Na(+)(i)) and extracellular Ba(2+) (Ba(2+)(o)), to define a site where Na(+)(o) interacts with HERG. Currents were recorded from transfected Chinese hamster ovary (CHO-K1) cells using the whole-cell voltage clamp technique. Inhibition of WT HERG by Na(+)(o) was not strongly dependent on the voltage during activating pulses. Three point mutants in the P-loop region (S624A, S624T, S631A) with intact K(+) selectivity and impaired inactivation each had reduced sensitivity to inhibition by Na(+)(o). Quantitatively similar effects of Na(+)(i) to inhibit HERG current were seen in the WT and S624A channels. As S624A has impaired Na(+)(o) sensitivity, this result suggested that Na(+)(o) and Na(+)(i) act at different sites. Extracellular Ba(2+) (Ba(2+)(o)) blocks K(+) channel pores, and thereby serves as a useful probe of K(+) channel structure. HERG channel inactivation promotes relief of Ba(2+) block (Weerapura, M., S. Nattel, M. Courtemanche, D. Doern, N. Ethier, and T. Hebert. 2000. J. Physiol. 526:265-278). We used this feature of HERG inactivation to distinguish between simple allosteric and pore-occluding models of Na(+)(o) action. A remote allosteric model predicts that Na(+)(o) will speed relief of Ba(2+)(o) block by promoting inactivation. Instead, Na(+)(o) slowed Ba(2+) egress and Ba(2+) relieved Na(+)(o) inhibition, consistent with Na(+)(o) binding to an outer pore site. The apparent affinities of the outer pore for Na(+)(o) and K(+)(o) as measured by slowing of Ba(2+) egress were compatible with competition between the two ions for the channel pore in their physiological concentration ranges. We also examined the role of the HERG closed state in Na(+)(o) inhibition. Na(+)(o) inhibition was inversely related to pulsing frequency in the WT channel, but not in the pore mutant S624A.

摘要

大多数电压门控性钾离子电流对细胞外钠离子(Na⁺(o))相对不敏感,但Na⁺(o)能有效抑制外向的人类ether-a-go-go相关基因(HERG)编码的钾离子通道电流(沼口弘、小J.P.约翰逊、C.I.彼得森和J.R.巴尔泽。2000年。《自然神经科学》3:429 - 30)。我们研究了野生型(WT)和突变型HERG电流,并使用两种策略性探针,即细胞内钠离子(Na⁺(i))和细胞外钡离子(Ba²⁺(o)),来确定Na⁺(o)与HERG相互作用的位点。使用全细胞电压钳技术从转染的中国仓鼠卵巢(CHO - K1)细胞中记录电流。Na⁺(o)对WT HERG的抑制在激活脉冲期间对电压的依赖性不强。P环区域的三个点突变体(S624A、S624T、S631A)具有完整的钾离子选择性且失活受损,它们对Na⁺(o)抑制的敏感性均降低。在WT和S624A通道中观察到Na⁺(i)抑制HERG电流的定量相似效应。由于S624A对Na⁺(o)的敏感性受损,该结果表明Na⁺(o)和Na⁺(i)作用于不同位点。细胞外钡离子(Ba²⁺(o))可阻断钾离子通道孔,因此可作为钾离子通道结构的有用探针。HERG通道失活促进Ba²⁺阻断的解除(韦拉普拉、S.纳特尔、M.库尔特曼什、D.多尔恩、N.埃蒂尔和T.赫伯特。2000年。《生理学杂志》526:265 - 278)。我们利用HERG失活的这一特性来区分Na⁺(o)作用的简单变构模型和孔阻塞模型。一个远程变构模型预测Na⁺(o)将通过促进失活来加速Ba²⁺(o)阻断的解除。相反,Na⁺(o)减缓了Ba²⁺的流出,且Ba²⁺缓解了Na⁺(o)的抑制,这与Na⁺(o)结合到外孔位点一致。通过Ba²⁺流出减慢测量的外孔对Na⁺(o)和K⁺(o)的表观亲和力与这两种离子在其生理浓度范围内对通道孔的竞争相符合。我们还研究了HERG关闭状态在Na⁺(o)抑制中的作用。Na⁺(o)抑制与WT通道中的脉冲频率呈负相关,但在孔突变体S624A中并非如此。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c49e/2229534/489deec35ce5/20028589f9.jpg

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