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CLC-0孔道中的构象变化。

Conformational changes in the pore of CLC-0.

作者信息

Accardi Alessio, Pusch Michael

机构信息

Istituto di Biofisica, Sezione di Genova, CNR, I-16149 Genova, Italy.

出版信息

J Gen Physiol. 2003 Sep;122(3):277-93. doi: 10.1085/jgp.200308834. Epub 2003 Aug 11.

Abstract

The Torpedo Cl- channel, CLC-0, is inhibited by clofibric acid derivatives from the intracellular side. We used the slow gate-deficient mutant CLC-0C212S to investigate the mechanism of block by the clofibric acid-derivative p-chlorophenoxy-acetic acid (CPA). CPA blocks open channels with low affinity (KDO= 45 mM at 0 mV) and shows fast dissociation (koff = 490 s-1 at -140 mV). In contrast, the blocker binds to closed channels with higher affinity and with much slower kinetics. This state-dependent block coupled with the voltage dependence of the gating transitions results in a highly voltage-dependent inhibition of macroscopic currents (KD approximately 1 mM at -140 mV; KD approximately 65 mM at 60 mV). The large difference in CPA affinity of the open and closed state suggests that channel opening involves more than just a local conformational rearrangement. On the other hand, in a recent work (Dutzler, R., E.B. Campbell, and R. MacKinnon. 2003. Science. 300:108-112) it was proposed that the conformational change underlying channel opening is limited to a movement of a single side chain. A prediction of this latter model is that mutations that influence CPA binding to the channel should affect the affinities for an open and closed channel in a similar manner since the general structure of the pore remains largely unchanged. To test this hypothesis we introduced point mutations in four residues (S123, T471, Y512, and K519) that lie close to the intracellular pore mouth or to the putative selectivity filter. Mutation T471S alters CPA binding exclusively to closed channels. Pronounced effects on the open channel block are observed in three other mutants, S123T, Y512A, and K519Q. Together, these results collectively suggest that the structure of the CPA binding site is different in the open and closed state. Finally, replacement of Tyr 512, a residue directly coordinating the central Cl- ion in the crystal structure, with Phe or Ala has very little effect on single channel conductance and selectivity. These observations suggest that channel opening in CLC-0 consists in more than a movement of a side chain and that other parts of the channel and of the selectivity filter are probably involved.

摘要

电鳐氯离子通道CLC-0在细胞内侧会受到氯贝酸衍生物的抑制。我们使用慢门控缺陷型突变体CLC-0C212S来研究氯贝酸衍生物对氯苯氧乙酸(CPA)的阻断机制。CPA以低亲和力阻断开放通道(在0 mV时KDO = 45 mM),并表现出快速解离(在-140 mV时koff = 490 s-1)。相比之下,该阻断剂与关闭通道结合的亲和力更高,动力学则慢得多。这种状态依赖性阻断与门控转换的电压依赖性相结合,导致宏观电流出现高度电压依赖性抑制(在-140 mV时KD约为1 mM;在60 mV时KD约为65 mM)。开放态和关闭态的CPA亲和力存在巨大差异,这表明通道开放不仅仅涉及局部构象重排。另一方面,在最近的一项研究(Dutzler, R., E.B. Campbell, and R. MacKinnon. 2003. Science. 300:108 - 112)中提出,通道开放背后的构象变化仅限于单个侧链的移动。后一种模型的一个预测是,影响CPA与通道结合的突变应该以类似方式影响其对开放通道和关闭通道的亲和力,因为孔的总体结构基本保持不变。为了验证这一假设,我们在靠近细胞内孔口或假定选择性过滤器的四个残基(S123、T471、Y512和K519)中引入了点突变。突变T471S仅改变CPA与关闭通道的结合。在其他三个突变体S123T、Y512A和K519Q中,观察到对开放通道阻断有显著影响。这些结果共同表明,CPA结合位点在开放态和关闭态的结构不同。最后,用苯丙氨酸或丙氨酸取代晶体结构中直接配位中心氯离子的酪氨酸512,对单通道电导和选择性几乎没有影响。这些观察结果表明,CLC-0中的通道开放不仅仅是一个侧链的移动,通道的其他部分以及选择性过滤器可能也参与其中。

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