Danelon Christophe, Grandl Jörg, Hovius Ruud, Vogel Horst
Laboratory of Physical Chemistry of Polymers and Membranes, Ecole Polytechnique Fédérale de Lausanne, CH-1015 Lausanne, Switzerland.
Biochim Biophys Acta. 2007 Jan;1768(1):76-89. doi: 10.1016/j.bbamem.2006.07.015. Epub 2006 Aug 2.
The nicotinic acetylcholine receptor (nAChR) is a ligand-gated ion channel that switches upon activation from a closed state to a full conducting state. We found that the mutation delta S268K, located at 12' position of the second transmembrane domain of the delta subunit of the human nAChR generates a long-lived intermediate conducting state, from which openings to a wild-type like conductance level occur on a submillisecond time scale. Aiming to understand the interplay between structural changes near the 12' position and channel gating, we investigated the influence of various parameters: different ligands (acetylcholine, choline and epibatidine), ligand concentrations, transmembrane voltages and both fetal and adult nAChRs. Since sojourns in the high conductance state are not fully resolved in time, spectral noise analysis was used as a complement to dwell time analysis to determine the gating rate constants. Open channel current fluctuations are described by a two-state Markov model. The characteristic time of the process is markedly influenced by the ligand and the receptor type, whereas the frequency of openings to the high conductance state increases with membrane hyperpolarization. Conductance changes are discussed with regard to reversible transfer reaction of single protons at the lysine 12' side chain.
烟碱型乙酰胆碱受体(nAChR)是一种配体门控离子通道,激活后会从关闭状态转变为完全导通状态。我们发现,位于人nAChR δ亚基第二个跨膜结构域12'位置的δS268K突变产生了一种寿命较长的中间导通状态,从该状态到类似野生型电导水平的开放发生在亚毫秒时间尺度上。为了理解12'位置附近的结构变化与通道门控之间的相互作用,我们研究了各种参数的影响:不同的配体(乙酰胆碱、胆碱和依博加碱)、配体浓度、跨膜电压以及胎儿和成人的nAChR。由于在高电导状态下的停留时间在时间上没有完全分辨清楚,因此使用光谱噪声分析作为对停留时间分析的补充来确定门控速率常数。开放通道电流波动由两态马尔可夫模型描述。该过程的特征时间受到配体和受体类型的显著影响,而向高电导状态开放的频率随着膜超极化而增加。关于赖氨酸12'侧链上单质子的可逆转移反应讨论了电导变化。