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蜜蜂 Cav4 通道具有独特的通透性、失活和药理学特性,与同源的 NaV 通道不同。

Honeybee CaV4 has distinct permeation, inactivation, and pharmacology from homologous NaV channels.

机构信息

Institut des Biomolécules Max Mousseron, Université de Montpellier, CNRS, ENSCM , Montpellier, France.

INRAE UR 406, Abeilles et Environnement, Domaine Saint Paul-Site Agroparc , Avignon, France.

出版信息

J Gen Physiol. 2024 May 6;156(5). doi: 10.1085/jgp.202313509. Epub 2024 Apr 1.

Abstract

DSC1, a Drosophila channel with sequence similarity to the voltage-gated sodium channel (NaV), was identified over 20 years ago. This channel was suspected to function as a non-specific cation channel with the ability to facilitate the permeation of calcium ions (Ca2+). A honeybee channel homologous to DSC1 was recently cloned and shown to exhibit strict selectivity for Ca2+, while excluding sodium ions (Na+), thus defining a new family of Ca2+ channels, known as CaV4. In this study, we characterize CaV4, showing that it exhibits an unprecedented type of inactivation, which depends on both an IFM motif and on the permeating divalent cation, like NaV and CaV1 channels, respectively. CaV4 displays a specific pharmacology with an unusual response to the alkaloid veratrine. It also possesses an inactivation mechanism that uses the same structural domains as NaV but permeates Ca2+ ions instead. This distinctive feature may provide valuable insights into how voltage- and calcium-dependent modulation of voltage-gated Ca2+ and Na+ channels occur under conditions involving local changes in intracellular calcium concentrations. Our study underscores the unique profile of CaV4 and defines this channel as a novel class of voltage-gated Ca2+ channels.

摘要

DSC1 是一种与电压门控钠离子通道(NaV)具有序列相似性的果蝇通道,早在 20 多年前就被发现。该通道被怀疑具有非特异性阳离子通道的功能,能够促进钙离子(Ca2+)的渗透。最近克隆了一种与 DSC1 同源的蜜蜂通道,并表明它对 Ca2+具有严格的选择性,同时排斥钠离子(Na+),从而定义了一个新的 Ca2+通道家族,称为 CaV4。在这项研究中,我们对 CaV4 进行了表征,表明它表现出一种前所未有的失活类型,这种失活类型既依赖于 IFM 基序,也依赖于渗透的二价阳离子,分别类似于 NaV 和 CaV1 通道。CaV4 具有独特的药理学特性,对生物碱藜芦碱的反应异常。它还具有一种失活机制,该机制使用与 NaV 相同的结构域,但渗透 Ca2+离子。这种独特的特征可能为电压和钙离子依赖性调制电压门控 Ca2+和 Na+通道在涉及细胞内钙离子浓度局部变化的情况下如何发生提供有价值的见解。我们的研究强调了 CaV4 的独特特征,并将该通道定义为一类新型的电压门控 Ca2+通道。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7bae/10983803/ab1ec530e8f6/JGP_202313509_Fig1.jpg

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