Johnson John W, Rikli Hillary G, Johnson Stephen R
Pharmacology Department, Southern Illinois University School of Medicine, Springfield, IL 62702, USA.
Carbon Dynamics Institute, LLC, Springfield, IL 62707, USA.
Toxins (Basel). 2025 Aug 29;17(9):432. doi: 10.3390/toxins17090432.
Venomous invertebrates have provided a large diversity of toxins that selectively and potently modulate ion channels that are indispensable tools for elucidating the structure and underlying mechanisms of these channels. Voltage-gated sodium channels (VGSC) are responsible for the initiation and propagation of action potentials in excitable cells and represent an important target for a variety of diseases. The Na1.7 isoform, located in the peripheral nervous system, is central to pain signaling and is under intense investigation as a target for the treatment of pain. Closed-state inactivation (CSI) has been implicated in various disease states, such as arrhythmias and neuropathic pain. The investigation of venom toxins and VGSC CSI is poorly understood. However, many scorpion and spider toxins bind to site 3, characterized by a delay in steady-state inactivation, and interact with domain IV of the channel alpha subunit. In this study, two novel toxins were isolated from the venoms of and that demonstrated similar activity to site 3 modulators. Both toxins were shown to inhibit CSI while enhancing the rate at which CSI can occur. Taken together, this study demonstrates the need for additional investigation in CSI as well as the ability for toxins to modulate this phenomenon.
有毒无脊椎动物产生了种类繁多的毒素,这些毒素能选择性且强效地调节离子通道,而离子通道是阐明这些通道结构及潜在机制不可或缺的工具。电压门控钠通道(VGSC)负责可兴奋细胞中动作电位的起始和传播,是多种疾病的重要靶点。位于外周神经系统的Na1.7亚型对于疼痛信号传导至关重要,作为疼痛治疗靶点正受到深入研究。关闭状态失活(CSI)与多种疾病状态有关,如心律失常和神经性疼痛。目前对毒液毒素和VGSC CSI的研究了解甚少。然而,许多蝎子和蜘蛛毒素与位点3结合,其特征是稳态失活延迟,并与通道α亚基的结构域IV相互作用。在本研究中,从两种蝎子毒液中分离出两种新型毒素,它们表现出与位点3调节剂相似的活性。两种毒素均显示出抑制CSI的同时提高了CSI发生的速率。综上所述,本研究表明需要对CSI进行更多研究,以及毒素调节这一现象的能力。