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鉴定影响起搏器(HCN)通道激活门控的S3-S4连接区中的一个表面带电残基。

Identification of a surface charged residue in the S3-S4 linker of the pacemaker (HCN) channel that influences activation gating.

作者信息

Henrikson Charles A, Xue Tian, Dong Peihong, Sang Dongpei, Marban Eduardo, Li Ronald A

机构信息

Institute of Molecular Cardiobiology, The Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.

出版信息

J Biol Chem. 2003 Apr 18;278(16):13647-54. doi: 10.1074/jbc.M211025200. Epub 2003 Feb 11.

Abstract

I(f), encoded by the hyperpolarization-activated cyclic nucleotide-modulated (HCN) channel family, is a key player in cardiac and neuronal pacing. Although HCN channels structurally resemble voltage-gated K(+) (Kv) channels, their structure-function correlation is much less clear. Here we probed the functional importance of the HCN1 S3-S4 linker by multiple substitutions of its residues. Neutralizing Glu(235), an acidic S3-S4 linker residue conserved in all hyperpolarization-activated channels, by Ala substitution produced a depolarizing activation shift (V(12) = -65.0 +/- 0.7 versus -70.6 +/- 0.7 mV for wild-type HCN1); the charge-reversed mutation E235R shifted activation even more positively (-56.2 +/- 0.5 mV). Increasing external Mg(2+) mimicked the progressive rightward shifts of E235A and E235R by gradually shifting activation (V(12) = 1 < 3 < 10 < 30 mm); Delta V(12) induced by 30 mm Mg(2+) was significantly attenuated for E235A (+7.9 +/- 1.2 versus +11.3 +/- 0.9 mV for wild-type HCN1) and E235R (+3.3 +/- 1.4 mV) channels, as if surface charges were already shielded. Consistent with an electrostatic role, the energetic changes associated with Delta V(12) resulting from various Glu(235) substitutions (i.e. Asp, Ala, Pro, His, Lys, and Arg) displayed a strong correlation with their charges (Delta Delta G = -2.1 +/- 0.3 kcal/mol/charge; r = 0.94). In contrast, D233E, D233A, D233G, and D233R did not alter activation gating. D233C (in C318S background) was also not externally accessible when probed with methanethiosulfonate ethylammonium (MTSEA). We conclude that the S3-S4 linker residue Glu(235) influences activation gating, probably by acting as a surface charge.

摘要

由超极化激活的环核苷酸调制(HCN)通道家族编码的I(f),是心脏和神经元起搏中的关键因素。尽管HCN通道在结构上类似于电压门控钾离子(Kv)通道,但其结构与功能的相关性尚不清楚。在此,我们通过对HCN1的S3 - S4连接子的残基进行多次替换,探究了其功能重要性。通过丙氨酸替换中和Glu(235)(所有超极化激活通道中保守的酸性S3 - S4连接子残基),产生了去极化激活偏移(野生型HCN1的V(12) = -65.0 ± 0.7 mV,而替换后为 -70.6 ± 0.7 mV);电荷反转突变E235R使激活更正向偏移(-56.2 ± 0.5 mV)。增加外部Mg(2+)通过逐渐改变激活(V(12) = 1 < 3 < 10 < 30 mM)模拟了E235A和E235R逐渐向右的偏移;对于E235A(野生型HCN1为 +11.3 ± 0.9 mV,而E235A为 +7.9 ± 1.2 mV)和E235R( +3.3 ± 1.4 mV)通道,30 mM Mg(2+)诱导的ΔV(12)显著减弱,就好像表面电荷已经被屏蔽。与静电作用一致,由各种Glu(235)替换(即Asp、Ala【此处原文Ala重复】、Pro、His、Lys和Arg)导致的与ΔV(12)相关的能量变化与其电荷显示出强烈的相关性(ΔΔG = -2.1 ± 0.3 kcal/mol/电荷;r = 0.94)。相反,D233E、D233A、D233G和D233R没有改变激活门控。当用甲硫代磺酸乙酯铵(MTSEA)探测时,D233C(在C318S背景下)在外部也不可接近。我们得出结论,S3 - S4连接子残基Glu(235)可能通过作为表面电荷来影响激活门控。

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