Cymes Gisela D, Ni Ying, Grosman Claudio
Department of Molecular and Integrative Physiology, Center for Biophysics and Computational Biology, and Neuroscience Program, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, USA.
Nature. 2005 Dec 15;438(7070):975-80. doi: 10.1038/nature04293.
Although membrane proteins often rely on ionizable residues for structure and function, their ionization states under physiological conditions largely elude experimental estimation. To gain insight into the effect of the local microenvironment on the proton affinity of ionizable residues, we have engineered individual lysines, histidines and arginines along the alpha-helical lining of the transmembrane pore of the nicotinic acetylcholine receptor. We can detect individual proton binding-unbinding reactions electrophysiologically at the level of a single proton on a single side chain as brief blocking-unblocking events of the passing cation current. Kinetic analysis of these fluctuations yields the position-dependent rates of proton transfer, from which the corresponding pK(a) values and shifts in pK(a) can be calculated. Here we present a self-consistent, residue-by-residue description of the microenvironment around the pore-lining transmembrane alpha-helices (M2) in the open-channel conformation, in terms of the excess free energy that is required to keep the engineered basic side chains protonated relative to bulk water. A comparison with closed-channel data leads us to propose that the rotation of M2, which is frequently invoked as a hallmark of the gating mechanism of Cys-loop receptors, is minimal, if any.
尽管膜蛋白的结构和功能常常依赖于可电离残基,但其在生理条件下的电离状态在很大程度上难以通过实验进行估算。为了深入了解局部微环境对可电离残基质子亲和力的影响,我们沿着烟碱型乙酰胆碱受体跨膜孔的α-螺旋内衬设计了单个赖氨酸、组氨酸和精氨酸。我们能够在电生理水平上检测单个侧链上单个质子的结合-解离反应,这些反应表现为通过的阳离子电流的短暂阻断-解除阻断事件。对这些波动进行动力学分析可得出质子转移的位置依赖性速率,由此可计算出相应的pK(a)值和pK(a)的变化。在此,我们根据相对于大量水使工程化碱性侧链保持质子化所需的过量自由能,给出了开放通道构象下跨膜孔内衬α-螺旋(M2)周围微环境的逐个残基的自洽描述。与关闭通道数据的比较使我们提出,M2的旋转(这经常被认为是半胱氨酸环受体门控机制的一个标志)即便存在也是极小的。