首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Structure of the KvAP voltage-dependent K+ channel and its dependence on the lipid membrane.
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Structure of the KvAP voltage-dependent K+ channel and its dependence on the lipid membrane.

机译:KvAP电压依赖性K +通道的结构及其对脂质膜的依赖性。

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Voltage-dependent ion channels gate open in response to changes in cell membrane voltage. This form of gating permits the propagation of action potentials. We present two structures of the voltage-dependent K(+) channel KvAP, in complex with monoclonal Fv fragments (3.9 A) and without antibody fragments (8 A). We also studied KvAP with disulfide cross-bridges in lipid membranes. Analyzing these data in the context of the crystal structure of Kv1.2 and EPR data on KvAP we reach the following conclusions: (i) KvAP is similar in structure to Kv1.2 with a very modest difference in the orientation of its voltage sensor; (ii) mAb fragments are not the source of non-native conformations of KvAP in crystal structures; (iii) because KvAP contains separate loosely adherent domains, a lipid membrane is required to maintain their correct relative orientations, and (iv) the model of KvAP is consistent with the proposal of voltage sensing through the movement of an arginine-containing helix-turn-helix element at theprotein-lipid interface.
机译:依赖于电压的离子通道根据细胞膜电压的变化而打开。这种门控形式允许动作电位的传播。我们目前的电压依赖性K(+)通道KvAP的两个结构,与单克隆Fv片段(3.9 A)和没有抗体片段(8 A)复杂。我们还研究了脂质膜中具有二硫键跨桥的KvAP。在Kv1.2的晶体结构和KvAP上的EPR数据的背景下分析这些数据,我们得出以下结论:(i)KvAP在结构上与Kv1.2相似,但其电压传感器的方向差异很小; (ii)mAb片段不是晶体结构中KvAP的非天然构象的来源; (iii)由于KvAP包含独立的松散附着域,因此需要脂质膜来维持其正确的相对方向;并且(iv)KvAP的模型与通过精氨酸的螺旋匝的移动进行电压感测的提议相一致。蛋白质-脂质界面上的-螺旋元件。

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