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S4 片段对 Shaker 钾通道门控电荷的贡献。

Contribution of the S4 segment to gating charge in the Shaker K+ channel.

作者信息

Aggarwal S K, MacKinnon R

机构信息

Department of Neurobiology, Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

Neuron. 1996 Jun;16(6):1169-77. doi: 10.1016/s0896-6273(00)80143-9.

Abstract

Voltage-activated ion channels respond to changes in membrane voltage by coupling the movement of charges to channel opening. A K+ channel-specific radioligand was designed and used to determine the origin of these gating charges in the Shaker K+ channel. Opening of a Shaker K+ channel is associated with a displacement of 13.6 electron charge units. Gating charge contributions were determined for six of the seven positive charges in the S4 segment, an unusual amino acid sequence in voltage-activated cation channels consisting of repeating basic residues at every third position. Charge-neutralizing mutations of the first four positive charges led to large decreases (approximately 4 electron charge units each) in the gating charge; however, the gating charge of Shaker delta 10, a Shaker K+ channel with 10 altered nonbasic residues in its S4 segment, was found to be identical to the wild-type channel. These findings show that movement of the NH2-terminal half but not the CO2H-terminal end of the S4 segment underlies gating charge, and that this portion of the S4 segment appears to move across the entire transmembrane voltage difference in association with channel activation.

摘要

电压门控离子通道通过将电荷移动与通道开放相偶联来响应膜电压的变化。设计并使用了一种钾离子通道特异性放射性配体来确定震荡器钾离子通道中这些门控电荷的来源。震荡器钾离子通道的开放与13.6个电子电荷单位的位移相关。对S4片段中七个正电荷中的六个的门控电荷贡献进行了测定,S4片段在电压门控阳离子通道中是一种不寻常的氨基酸序列,每隔三个位置就有重复的碱性残基。前四个正电荷的电荷中和突变导致门控电荷大幅减少(每个约4个电子电荷单位);然而,发现震荡器δ10(一种在其S4片段中有10个改变的非碱性残基的震荡器钾离子通道)的门控电荷与野生型通道相同。这些发现表明,S4片段氨基末端的一半而非羧基末端的移动是门控电荷的基础,并且S4片段的这一部分似乎与通道激活相关,跨越整个跨膜电压差移动。

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