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Kv2.1/6.4 通道中偏头痛疾病突变的功能特性。

Functional properties of a disease mutation for migraine in Kv2.1/6.4 channels.

机构信息

Institut für Physiologie II, Universitätsklinikum Jena, 07740, Jena, Germany.

Institut für Physiologie II, Universitätsklinikum Jena, 07740, Jena, Germany.

出版信息

Biochem Biophys Res Commun. 2024 Dec 17;738:150560. doi: 10.1016/j.bbrc.2024.150560. Epub 2024 Aug 15.

DOI:10.1016/j.bbrc.2024.150560
PMID:39159549
Abstract

Voltage-gated potassium (Kv) channels are integral to cellular excitability, impacting the resting membrane potential, repolarization, and shaping action potentials in neurons and cardiac myocytes. Structurally, Kv channels are homo or heterotetramers comprising four α-subunits, each with six transmembrane segments (S1-S6). Silent Kv (KvS), includes Kv5.1, Kv6.1-6.4, Kv8.1-8.2, and Kv9.1-9.3, they do not form functional channels on their own but modulate the properties of heteromeric channels. Recent studies have identified the Kv6.4 subunit as a significant modulator within heteromeric channels, such as Kv2.16.4. The Kv2.16.4 heteromer exhibits altered biophysical properties, including a shift in voltage-dependent inactivation and a complex activation. Current genetic studies in migraine patients have revealed a single missense mutation in the Kv6.4 gene. The single missense mutation, L360P is in the highly conserved S4-S5 linker region. This study aims to demonstrate the biophysical effects of the L360P mutation in Kv2.1 6.4 channels with a fixed 2:2 stoichiometry, using monomeric (Kv2.1/6.4) and tandem dimer (Kv2.1_6.4) configurations. Our findings suggest that the L360P mutation significantly impacts the function and regulation of Kv2.1/6.4 channels, providing insights into the molecular mechanisms underlying channel dysfunction in migraine pathology.

摘要

电压门控钾 (Kv) 通道是细胞兴奋性的基础,影响静息膜电位、复极化和神经元和心肌细胞动作电位的形成。在结构上,Kv 通道由四个 α 亚基组成同源或异源四聚体,每个亚基由六个跨膜片段 (S1-S6) 组成。沉默 Kv (KvS) 包括 Kv5.1、Kv6.1-6.4、Kv8.1-8.2 和 Kv9.1-9.3,它们本身不能形成功能性通道,但调节异源四聚体通道的特性。最近的研究表明,Kv6.4 亚基是异源四聚体通道(如 Kv2.16.4)中的重要调节剂。Kv2.16.4 异源四聚体表现出改变的生物物理特性,包括电压依赖性失活的转移和复杂的激活。目前对偏头痛患者的遗传研究揭示了 Kv6.4 基因中的单个错义突变。该单个错义突变,L360P 位于高度保守的 S4-S5 连接区。本研究旨在使用单体 (Kv2.1/6.4) 和串联二聚体 (Kv2.1_6.4) 构象,证明 L360P 突变对 Kv2.1 6.4 通道的生物物理效应,具有固定的 2:2 化学计量比。我们的研究结果表明,L360P 突变显著影响 Kv2.1/6.4 通道的功能和调节,为偏头痛发病机制中通道功能障碍的分子机制提供了深入了解。

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