Nayak Tapan K, Harinath S, Nama S, Somasundaram K, Sikdar S K
Molecular Biophysics Unit, Indian Institute of Science, Bangalore 560012, Karnataka, India.
Mol Pharmacol. 2009 Oct;76(4):903-17. doi: 10.1124/mol.109.056838. Epub 2009 Jul 21.
TWIK-related K+ channel TREK1, a background leak K+ channel, has been strongly implicated as the target of several general and local anesthetics. Here, using the whole-cell and single-channel patch-clamp technique, we investigated the effect of lidocaine, a local anesthetic, on the human (h)TREK1 channel heterologously expressed in human embryonic kidney 293 cells by an adenoviral-mediated expression system. Lidocaine, at clinical concentrations, produced reversible, concentration-dependent inhibition of hTREK1 current, with IC(50) value of 180 muM, by reducing the single-channel open probability and stabilizing the closed state. We have identified a strategically placed unique aromatic couplet (Tyr352 and Phe355) in the vicinity of the protein kinase A phosphorylation site, Ser348, in the C-terminal domain (CTD) of hTREK1, that is critical for the action of lidocaine. Furthermore, the phosphorylation state of Ser348 was found to have a regulatory role in lidocaine-mediated inhibition of hTREK1. It is interesting that we observed strong intersubunit negative cooperativity (Hill coefficient = 0.49) and half-of-sites saturation binding stoichiometry (half-reaction order) for the binding of lidocaine to hTREK1. Studies with the heterodimer of wild-type (wt)-hTREK1 and Delta119 C-terminal deletion mutant (hTREK1(wt)-Delta119) revealed that single CTD of hTREK1 was capable of mediating partial inhibition by lidocaine, but complete inhibition necessitates the cooperative interaction between both the CTDs upon binding of lidocaine. Based on our observations, we propose a model that explains the unique kinetics and provides a plausible paradigm for the inhibitory action of lidocaine on hTREK1.
TWIK相关钾通道TREK1是一种背景性钾离子渗漏通道,被强烈认为是多种全身麻醉药和局部麻醉药的作用靶点。在此,我们使用全细胞膜片钳和单通道膜片钳技术,研究了局部麻醉药利多卡因对通过腺病毒介导的表达系统在人胚肾293细胞中异源表达的人(h)TREK1通道的影响。临床浓度的利多卡因通过降低单通道开放概率并稳定关闭状态,对hTREK1电流产生可逆的、浓度依赖性抑制,半数抑制浓度(IC50)值为180μM。我们在hTREK1 C末端结构域(CTD)中蛋白激酶A磷酸化位点Ser348附近确定了一个位置关键的独特芳香族二联体(Tyr352和Phe355),这对于利多卡因的作用至关重要。此外,发现Ser348的磷酸化状态在利多卡因介导的hTREK1抑制中具有调节作用。有趣的是,我们观察到利多卡因与hTREK1结合存在强烈的亚基间负协同性(希尔系数 = 0.49)和半位点饱和结合化学计量(半反应级数)。对野生型(wt)-hTREK1和C末端缺失突变体Delta119(hTREK1(wt)-Delta119)异二聚体的研究表明,hTREK1的单个CTD能够介导利多卡因的部分抑制作用,但完全抑制需要利多卡因结合时两个CTD之间的协同相互作用。基于我们的观察结果,我们提出了一个模型,该模型解释了独特的动力学,并为利多卡因对hTREK1的抑制作用提供了一个合理的范例。