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Benchmarking the stability of human detergent-solubilised voltage-gated sodium channels for structural studies using eel as a reference

机译:使用鳗鱼作为参考对人类洗涤剂溶解的电压门控钠通道的稳定性进行结构研究的基准

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摘要

With the ultimate goal of detailed structural analysis of mammalian and particularly human voltage-gated sodium channels (VGSCs), we have investigated the relative stability of human and rat VGSCs and compared them with electric eel VGSC. We found that NaV1.3 from rat was the most stable after detergent solubilisation. The order of stability was rNaV1.3 > hNaV1.2 > hNaV1.1 > hNaV1.6 > hNaV1.3 > hNaV1.4. However, a comparison with the VGSC from Electrophorus electricus, which is most similar to NaV1.4, shows that the eel VGSC is considerably more stable in detergent than the human VGSCs examined. We conclude that current methods of structural analysis, such as single particle electron cryomicroscopy (cryoEM), may be most usefully targeted to eel VGSC or rNaV1.3, but that structural analysis on the full spectrum of VGSCs, by methods that require greater stability such as crystallisation and X-ray crystallography, will require further stabilisation of the channel.
机译:为了详细分析哺乳动物尤其是人类电压门控钠通道(VGSC)的结构,我们研究了人类和大鼠VGSC的相对稳定性并将其与鳗鱼VGSC进行了比较。我们发现来自大鼠的NaV1.3在去污剂溶解后最稳定。稳定性顺序为rNaV1.3> hNaV1.2> hNaV1.1> hNaV1.6> hNaV1.3> hNaV1.4。但是,与最类似于NaV1.4的Electrophorus electricus的VGSC的比较表明,鳗鱼VGSC在洗涤剂中的稳定性要比所检查的人类VGSC稳定得多。我们得出的结论是,当前的结构分析方法,例如单粒子电子低温显微术(cryoEM),可能最有用地针对鳗鱼VGSC或rNaV1.3,但通过要求更大稳定性的方法,对VGSC的整个光谱进行结构分析。如结晶和X射线晶体学,将需要进一步稳定通道。

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