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Backbone Resonance Assignments of Complexes of Apo Human Calmodulin Bound to IQ Motif Peptides of Voltage-Dependent Sodium Channels NaV1.1 NaV1.4 and NaV1.7

机译:载脂蛋白人类钙调蛋白的复合物的骨架共振分配绑定到电压依赖性钠通道NaV1.1NaV1.4和NaV1.7的IQ基序肽

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摘要

Human voltage-gated sodium (NaV) channels are critical for initiating and propagating action potentials in excitable cells. Nine isoforms have different roles but similar topologies, with a pore-forming α-subunit and auxiliary transmembrane β-subunits. NaV pathologies lead to debilitating conditions including epilepsy, chronic pain, cardiac arrhythmias, and skeletal muscle paralysis. The ubiquitous calcium sensor calmodulin (CaM) binds to an IQ motif in the C-terminal tail of the α-subunit of all NaV isoforms, and contributes to calcium-dependent pore-gating in some channels. Previous structural studies of calcium-free (apo) CaM bound to the IQ motifs of NaV1.2, NaV1.5, and NaV1.6 showed that CaM binding was mediated by the C-domain of CaM (CaMC), while the N-domain (CaMN) made no detectable contacts. To determine whether this domain-specific recognition mechanism is conserved in other NaV isoforms, we used solution NMR spectroscopy to assign the backbone resonances of complexes of apo CaM bound to peptides of IQ motifs of NaV1.1, NaV1.4, and NaV1.7. Analysis of chemical shift differences showed that peptide binding only perturbed resonances in CaMC; resonances of CaMN were identical to free CaM. Thus, CaMC residues contribute to the interface with the IQ motif, while CaMN is available to interact elsewhere on the channel.
机译:人体电压门控钠(NaV)通道对于在可激发细胞中启动和传播动作电位至关重要。九个同工型具有不同的作用,但具有相似的拓扑结构,具有成孔的α亚基和辅助跨膜β亚基。 NaV病理会导致衰弱,包括癫痫,慢性疼痛,心律不齐和骨骼肌麻痹。普遍存在的钙传感器钙调蛋白(CaM)与所有NaV亚型的α亚基的C末端尾部的IQ主题结合,并在某些通道中促成钙依赖性孔门控。先前与NaV1.2,NaV1.5和NaV1.6的IQ基序结合的无钙(apo)CaM的结构研究表明,CaM结合是由CaM(CaMC)的C结构域介导的,而N-域(CaMN)没有可检测到的联系。为了确定这种特定于域的识别机制在其他NaV亚型中是否保守,我们使用溶液NMR光谱法确定与NaV1.1,NaV1.4和NaV1.7的IQ模体肽结合的载脂蛋白CaM复合物的骨架共振。 。化学位移差异分析表明,肽结合仅扰动CaMC中的共振。 CaMN的共振与游离CaM相同。因此,CaMC残基有助于与IQ基序的界面,而CaMN可用于与通道的其他位置相互作用。

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