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荧光追踪人类 ERG 通道的激活门控揭示了快速 S4 运动和缓慢的孔道开放。

Fluorescence-tracking of activation gating in human ERG channels reveals rapid S4 movement and slow pore opening.

机构信息

Department of Anesthesiology, Pharmacology and Therapeutics, University of British Columbia, Vancouver, British Columbia, Canada.

出版信息

PLoS One. 2010 May 28;5(5):e10876. doi: 10.1371/journal.pone.0010876.

Abstract

BACKGROUND

hERG channels are physiologically important ion channels which mediate cardiac repolarization as a result of their unusual gating properties. These are very slow activation compared with other mammalian voltage-gated potassium channels, and extremely rapid inactivation. The mechanism of slow activation is not well understood and is investigated here using fluorescence as a direct measure of S4 movement and pore opening.

METHODS AND FINDINGS

Tetramethylrhodamine-5-maleimide (TMRM) fluorescence at E519 has been used to track S4 voltage sensor movement, and channel opening and closing in hERG channels. Endogenous cysteines (C445 and C449) in the S1-S2 linker bound TMRM, which caused a 10 mV hyperpolarization of the V((1/2)) of activation to -27.5+/-2.0 mV, and showed voltage-dependent fluorescence signals. Substitution of S1-S2 linker cysteines with valines allowed unobstructed recording of S3-S4 linker E519C and L520C emission signals. Depolarization of E519C channels caused rapid initial fluorescence quenching, fit with a double Boltzmann relationship, F-V(ON), with V((1/2)) (,1) = -37.8+/-1.7 mV, and V((1/2)) (,2) = 43.5+/-7.9 mV. The first phase, V((1/2)) (,1), was approximately 20 mV negative to the conductance-voltage relationship measured from ionic tail currents (G-V((1/2)) = -18.3+/-1.2 mV), and relatively unchanged in a non-inactivating E519C:S620T mutant (V((1/2)) = -34.4+/-1.5 mV), suggesting the fast initial fluorescence quenching tracked S4 voltage sensor movement. The second phase of rapid quenching was absent in the S620T mutant. The E519C fluorescence upon repolarization (V((1/2)) = -20.6+/-1.2, k = 11.4 mV) and L520C quenching during depolarization (V((1/2)) = -26.8+/-1.0, k = 13.3 mV) matched the respective voltage dependencies of hERG ionic tails, and deactivation time constants from -40 to -110 mV, suggesting they detected pore-S4 rearrangements related to ionic current flow during pore opening and closing.

CONCLUSION

THE DATA INDICATE: 1) that rapid environmental changes occur at the outer end of S4 in hERG channels that underlie channel activation gating, and 2) that secondary slower changes reflect channel pore opening during sustained depolarizations, and channel closing upon repolarization. 3) No direct evidence was obtained of conformational changes related to inactivation from fluorophores attached at the outer end of S4.

摘要

背景

HERG 通道是生理上重要的离子通道,由于其特殊的门控特性,介导心脏复极。与其他哺乳动物电压门控钾通道相比,它们的激活非常缓慢,失活非常迅速。慢激活的机制尚不清楚,本文使用荧光作为 S4 运动和孔道开放的直接测量来对此进行研究。

方法和发现

TMRM 荧光在 E519 处已被用于跟踪 hERG 通道中的 S4 电压传感器运动和孔道的开启和关闭。S1-S2 连接体中的内源性半胱氨酸(C445 和 C449)与 TMRM 结合,导致激活的 V((1/2))向-27.5+/-2.0 mV 超极化,并且显示出电压依赖性荧光信号。用缬氨酸取代 S1-S2 连接体中的半胱氨酸,允许对 S3-S4 连接体 E519C 和 L520C 发射信号进行无障碍记录。E519C 通道的去极化导致快速初始荧光猝灭,与双 Boltzmann 关系 F-V(ON)拟合,V((1/2))(,1)=-37.8+/-1.7 mV,V((1/2))(,2)=43.5+/-7.9 mV。第一阶段 V((1/2))(,1)大约比从离子尾电流测量的电导-电压关系负 20 mV(G-V((1/2))=-18.3+/-1.2 mV),并且在非失活的 E519C:S620T 突变体中相对不变(V((1/2))=-34.4+/-1.5 mV),表明快速初始荧光猝灭跟踪 S4 电压传感器运动。S620T 突变体中不存在快速猝灭的第二阶段。E519C 在复极化时的荧光(V((1/2))=-20.6+/-1.2,k=11.4 mV)和 L520C 在去极化时的猝灭(V((1/2))=-26.8+/-1.0,k=13.3 mV)与 hERG 离子尾的相应电压依赖性相匹配,以及从-40 到-110 mV 的失活时间常数,表明它们检测到与离子电流在孔道开启和关闭期间流动相关的孔-S4 重排。

结论

数据表明:1)hERG 通道中 S4 外端发生快速环境变化,这是通道激活门控的基础;2)较慢的二次变化反映了持续去极化时通道孔的开放,以及复极化时通道的关闭。3)未从 S4 外端附着的荧光团获得与失活相关的构象变化的直接证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac07/2878317/567d72b57179/pone.0010876.g001.jpg

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