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Intrinsically disordered C-terminal segments of voltage-activated potassium channels: a possible fishing rod-like mechanism for channel binding to scaffold proteins

机译:电压激活钾通道的内在无序C末端片段:通道绑定到支架蛋白的可能钓鱼杆样机制

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摘要

Membrane-embedded voltage-activated potassium channels (Kv) bind intracellular scaffold proteins, such as the Post Synaptic Density 95 (PSD-95) protein, using a conserved PDZ-binding motif located at the channels' C-terminal tip. This interaction underlies Kv-channel clustering, and is important for the proper assembly and functioning of the synapse. Here we demonstrate that the C-terminal segments of Kv channels adjacent to the PDZ-binding motif are intrinsically disordered. Phylogenetic analysis of the Kv channel family reveals a cluster of channel sequences belonging to three out of the four main channel families, for which an association is demonstrated between the presence of the consensus terminal PDZ-binding motif and the intrinsically disordered nature of the immediately adjacent C-terminal segment. Our observations, combined with a structural analogy to the N-terminal intra-molecular ball-and-chain mechanism for Kv channel inactivation, suggest that the C-terminal disordered segments of these channel families encode an inter-molecular fishing rod-like mechanism for K+ channel binding to scaffold proteins.
机译:膜嵌入的电压激活钾通道(Kv)使用位于通道C末端尖端的保守PDZ结合基序结合细胞内支架蛋白,例如突触后密度95(PSD-95)蛋白。这种相互作用是Kv通道聚类的基础,对于突触的正确组装和功能很重要。在这里,我们证明与PDZ结合基序相邻的Kv通道的C末端片段本质上是无序的。 Kv通道家族的系统发育分析揭示了属于四个主要通道家族中三个通道家族的通道序列簇,为此,在共有末端PDZ结合基序的存在与直接相邻的PDZ结合基序的内在无序性之间存在关联C端片段。我们的观察结果,与结构上类似于Kv通道失活的N端分子内球链机制的结构相似,表明这些通道家族的C端无序片段编码了一种分子间钓鱼竿样机制, K +通道与支架蛋白的结合。

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