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抗体引导的电压门控钾电流光消融。

Antibody-guided photoablation of voltage-gated potassium currents.

机构信息

Department of Physiology and Membrane Biology, University of California, Davis, Davis, CA 95616, USA.

出版信息

J Gen Physiol. 2013 Sep;142(3):315-24. doi: 10.1085/jgp.201311023. Epub 2013 Aug 12.

Abstract

A family of 40 mammalian voltage-gated potassium (Kv) channels control membrane excitability in electrically excitable cells. The contribution of individual Kv channel types to electrophysiological signaling has been difficult to assign, as few selective inhibitors exist for individual Kv subunits. Guided by the exquisite selectivity of immune system interactions, we find potential for antibody conjugates as selective Kv inhibitors. Here, functionally benign anti-Kv channel monoclonal antibodies (mAbs) were chemically modified to facilitate photoablation of K currents. Antibodies were conjugated to porphyrin compounds that upon photostimulation inflict localized oxidative damage. Anti-Kv4.2 mAb-porphyrin conjugates facilitated photoablation of Kv4.2 currents. The degree of K current ablation was dependent on photon dose and conjugate concentration. Kv channel photoablation was selective for Kv4.2 over Kv4.3 or Kv2.1, yielding specificity not present in existing neurotoxins or other Kv channel inhibitors. We conclude that antibody-porphyrin conjugates are capable of selective photoablation of Kv currents. These findings demonstrate that subtype-specific mAbs that in themselves do not modulate ion channel function are capable of delivering functional payloads to specific ion channel targets.

摘要

一个由 40 种哺乳动物电压门控钾 (Kv) 通道组成的家族控制着电兴奋细胞的膜兴奋性。由于缺乏针对单个 Kv 亚基的选择性抑制剂,因此很难确定个别 Kv 通道类型对电生理信号传递的贡献。受免疫系统相互作用的高度选择性的指导,我们发现抗体偶联物具有成为选择性 Kv 抑制剂的潜力。在这里,我们对功能性无害的抗 Kv 通道单克隆抗体 (mAb) 进行了化学修饰,以促进 K 电流的光消融。抗体与卟啉化合物偶联,这些化合物在光刺激下会造成局部氧化损伤。抗 Kv4.2 mAb-卟啉偶联物促进 Kv4.2 电流的光消融。K 电流的消融程度取决于光剂量和偶联物浓度。Kv 通道光消融对 Kv4.2 具有选择性,而对 Kv4.3 或 Kv2.1 则没有,这表明与现有的神经毒素或其他 Kv 通道抑制剂相比,不存在这种特异性。我们得出结论,抗体-卟啉偶联物能够选择性地光消融 Kv 电流。这些发现表明,本身不调节离子通道功能的亚型特异性 mAb 能够将功能有效载荷递送到特定的离子通道靶标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2557/3753605/e04aebaa4cb1/JGP_201311023_Fig1.jpg

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