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用于药理学研究的钠通道结构域的无细胞表达。人Na1.4通道第二电压传感结构域中的非典型蜘蛛毒素结合位点。

Cell-Free Expression of Sodium Channel Domains for Pharmacology Studies. Noncanonical Spider Toxin Binding Site in the Second Voltage-Sensing Domain of Human Na1.4 Channel.

作者信息

Myshkin Mikhail Yu, Männikkö Roope, Krumkacheva Olesya A, Kulbatskii Dmitrii S, Chugunov Anton O, Berkut Antonina A, Paramonov Alexander S, Shulepko Mikhail A, Fedin Matvey V, Hanna Michael G, Kullmann Dimitri M, Bagryanskaya Elena G, Arseniev Alexander S, Kirpichnikov Mikhail P, Lyukmanova Ekaterina N, Vassilevski Alexander A, Shenkarev Zakhar O

机构信息

Shemyakin and Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, Moscow, Russia.

MRC Centre for Neuromuscular Diseases, Department of Molecular Neuroscience, UCL Institute of Neurology, London, United Kingdom.

出版信息

Front Pharmacol. 2019 Sep 4;10:953. doi: 10.3389/fphar.2019.00953. eCollection 2019.

Abstract

Voltage-gated sodium (Na) channels are essential for the normal functioning of cardiovascular, muscular, and nervous systems. These channels have modular organization; the central pore domain allows current flow and provides ion selectivity, whereas four peripherally located voltage-sensing domains (VSDs-I/IV) are needed for voltage-dependent gating. Mutations in the S4 voltage-sensing segments of VSDs in the skeletal muscle channel Na1.4 trigger leak (gating pore) currents and cause hypokalemic and normokalemic periodic paralyses. Previously, we have shown that the gating modifier toxin Hm-3 from the crab spider binds to the S3-S4 extracellular loop in VSD-I of Na1.4 channel and inhibits gating pore currents through the channel with mutations in VSD-I. Here, we report that Hm-3 also inhibits gating pore currents through the same channel with the R675G mutation in VSD-II. To investigate the molecular basis of Hm-3 interaction with VSD-II, we produced the corresponding 554-696 fragment of Na1.4 in a continuous exchange cell-free expression system based on the S30 extract. We then performed a combined nuclear magnetic resonance (NMR) and electron paramagnetic resonance spectroscopy study of isolated VSD-II in zwitterionic dodecylphosphocholine/lauryldimethylamine-N-oxide or dodecylphosphocholine micelles. To speed up the assignment of backbone resonances, five selectively C,N-labeled VSD-II samples were produced in accordance with specially calculated combinatorial scheme. This labeling approach provides assignment for ∼50% of the backbone. Obtained NMR and electron paramagnetic resonance data revealed correct secondary structure, quasi-native VSD-II fold, and enhanced ps-ns timescale dynamics in the micelle-solubilized domain. We modeled the structure of the VSD-II/Hm-3 complex by protein-protein docking involving binding surfaces mapped by NMR. Hm-3 binds to VSDs I and II using different modes. In VSD-II, the protruding ß-hairpin of Hm-3 interacts with the S1-S2 extracellular loop, and the complex is stabilized by ionic interactions between the positively charged toxin residue K24 and the negatively charged channel residues E604 or D607. We suggest that Hm-3 binding to these charged groups inhibits voltage sensor transition to the activated state and blocks the depolarization-activated gating pore currents. Our results indicate that spider toxins represent a useful hit for periodic paralyses therapy development and may have multiple structurally different binding sites within one Na molecule.

摘要

电压门控钠(Na)通道对于心血管、肌肉和神经系统的正常功能至关重要。这些通道具有模块化结构;中央孔道结构域允许电流通过并提供离子选择性,而四个位于周边的电压感应结构域(VSDs - I/IV)则用于电压依赖性门控。骨骼肌通道Na1.4中VSDs的S4电压感应片段发生突变会引发泄漏(门控孔)电流,并导致低钾血症性和正常钾血症性周期性麻痹。此前,我们已经表明,蟹蛛的门控修饰毒素Hm - 3与Na1.4通道VSD - I中的S3 - S4细胞外环结合,并通过VSD - I中发生突变的通道抑制门控孔电流。在此,我们报告Hm - 3还能抑制具有VSD - II中R675G突变的同一通道的门控孔电流。为了研究Hm - 3与VSD - II相互作用的分子基础,我们基于S30提取物在连续交换无细胞表达系统中产生了Na1.4相应的554 - 696片段。然后,我们在两性离子十二烷基磷酰胆碱/月桂基二甲基胺 - N - 氧化物或十二烷基磷酰胆碱胶束中对分离的VSD - II进行了核磁共振(NMR)和电子顺磁共振光谱联合研究。为了加快主链共振的归属,根据专门计算的组合方案制备了五个选择性C、N标记的VSD - II样品。这种标记方法为约50%的主链提供了归属。获得的NMR和电子顺磁共振数据揭示了正确的二级结构、准天然的VSD - II折叠以及胶束溶解结构域中增强的皮秒 - 纳秒时间尺度动力学。我们通过涉及由NMR绘制的结合表面的蛋白质 - 蛋白质对接对VSD - II/Hm - 3复合物的结构进行了建模。Hm - 3以不同模式与VSDs I和II结合。在VSD - II中,Hm - 3突出的β - 发夹与S1 - S2细胞外环相互作用,并且复合物通过带正电的毒素残基K24与带负电的通道残基E604或D607之间的离子相互作用而稳定。我们认为Hm - 3与这些带电基团的结合会抑制电压传感器向激活状态的转变,并阻断去极化激活的门控孔电流。我们的结果表明,蜘蛛毒素是周期性麻痹治疗开发的有用切入点,并且在一个Na分子内可能有多个结构不同的结合位点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5165/6737007/b826abf2c271/fphar-10-00953-g001.jpg

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