首页> 美国卫生研究院文献>The Journal of General Physiology >Gating Competence of Constitutively Open CLC-0 Mutants Revealed by the Interaction with a Small Organic Inhibitor
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Gating Competence of Constitutively Open CLC-0 Mutants Revealed by the Interaction with a Small Organic Inhibitor

机译:通过与小有机抑制剂的相互作用揭示的组成性开放式CLC-0突变体的门控能力。

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摘要

Opening of CLC chloride channels is coupled to the translocation of the permeant anion. From the recent structure determination of bacterial CLC proteins in the closed and open configuration, a glutamate residue was hypothesized to form part of the Cl-sensitive gate. The negatively charged side-chain of the glutamate was suggested to occlude the permeation pathway in the closed state, while opening of a single protopore of the double-pore channel would reflect mainly a movement of this side-chain toward the extracellular pore vestibule, with little rearrangement of the rest of the channel. Here we show that mutating this critical residue (Glu166) in the prototype Torpedo CLC-0 to alanine, serine, or lysine leads to constitutively open channels, whereas a mutation to aspartate strongly slowed down opening. Furthermore, we investigated the interaction of the small organic channel blocker p-chlorophenoxy-acetic acid (CPA) with the mutants E166A and E166S. Both mutants were strongly inhibited by CPA at negative voltages with a >200-fold larger affinity than for wild-type CLC-0 (apparent KD at −140 mV ∼4 μM). A three-state linear model with an open state, a low-affinity and a high-affinity CPA-bound state can quantitatively describe steady-state and kinetic properties of the CPA block. The parameters of the model and additional mutagenesis suggest that the high-affinity CPA-bound state is similar to the closed configuration of the protopore gate of wild-type CLC-0. In the E166A mutant the glutamate side chain that occludes the permeation pathway is absent. Thus, if gating consists only in movement of this side-chain the mutant E166A should not be able to assume a closed conformation. It may thus be that fast gating in CLC-0 is more complex than anticipated from the bacterial structures.
机译:CLC氯离子通道的打开与渗透阴离子的移位有关。根据最近在封闭和开放状态下细菌CLC蛋白的结构测定,假设谷氨酸残基形成Cl -敏感门的一部分。谷氨酸带负电的侧链建议在封闭状态下阻塞渗透途径,而双孔通道的单个原孔的开放将主要反映该侧链向细胞外孔前庭的运动,其中其余频道的重新排列很少。在这里,我们显示将原型Torpedo CLC-0中的这个关键残基(Glu166)突变为丙氨酸,丝氨酸或赖氨酸会导致组成性开放通道,而天冬氨酸的突变会大大减慢开放速度。此外,我们调查了小的有机通道阻滞剂对氯苯氧基乙酸(CPA)与突变体E166A和E166S的相互作用。两种突变体均在负电压下被CPA强烈抑制,其亲和力比野生型CLC-0(在-140 mV〜4μM时的表观KD)大200倍以上。具有开放状态,低亲和力和高亲和力的CPA结合状态的三态线性模型可以定量描述CPA嵌段的稳态和动力学性质。该模型的参数和其他诱变表明,高亲和力的CPA结合状态类似于野生型CLC-0的原生孔门的封闭结构。在E166A突变体中,不存在遮盖渗透途径的谷氨酸侧链。因此,如果门控仅在于该侧链的运动,则突变体E166A应该不能呈现封闭构象。因此,CLC-0中的快速门控可能比细菌结构所预期的要复杂。

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