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首页> 外文期刊>Biophysical Journal >Proton transport pathway in the ClC Cl-/H+ antiporter.
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Proton transport pathway in the ClC Cl-/H+ antiporter.

机译:ClC Cl- / H +反转运蛋白中的质子转运途径。

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摘要

A fundamental question concerning the ClC Cl-/H+ antiporters is the nature of their proton transport (PT) pathway. We addressed this issue by using a novel computational methodology capable of describing the explicit PT dynamics in the ClC-ec1 protein. The main result is that the Glu203 residue delivers a proton from the intracellular solution to the core of ClC-ec1 via a rotation of its side chain and subsequent acid dissociation. After reorientation of the Glu203 side chain, a transient water-mediated PT pathway between Glu203 and Glu148 is established that is able to receive and translocate the proton via Grotthuss shuttling after deprotonation of Glu203. A molecular-dynamics simulation of an explicit hydrated excess proton in this pathway suggests that a negatively charged Glu148 and the central Cl- ion act together to drive H+ to the extracellular side of the membrane. This finding is consistent with the experimental result that Cl- binding to the central site facilitates the proton movement. A calculation of the PT free-energy barrier for the ClC-ec1 E203V mutant also supports the proposal that a dissociable residue is required at this position for efficient delivery of H+ to the protein interior, in agreement with recent experimental results.
机译:关于ClC Cl- / H +反转运蛋白的一个基本问题是其质子转运(PT)途径的性质。我们通过使用能够描述ClC-ec1蛋白中明确的PT动态的新型计算方法解决了这个问题。主要结果是,Glu203残基通过其侧链的旋转和随后的酸解离,将质子从细胞内溶液传递到ClC-ec1的核心。在Glu203侧链重新定向后,在Glu203和Glu148之间建立了一个短暂的水介导的PT通路,该通路能够在Glu203脱质子化之后通过Grotthuss穿梭来接收和转移质子。在该途径中显式水合过量质子的分子动力学模拟表明,带负电荷的Glu148和中心Cl-离子共同起作用,将H +驱至膜的细胞外侧。该发现与Cl-结合至中心位点促进质子运动的实验结果一致。 ClC-ec1 E203V突变体的PT自由能垒的计算也支持这样的建议:与最近的实验结果一致,该位置需要一个可解离的残基才能有效地将H +传递到蛋白质内部。

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