Laboratório de Biologia Teórica e Computacional, Departamento de Biologia Celular, Universidade de Brasília, DF 70910-900, Brasília, Brazil.
Proc Natl Acad Sci U S A. 2012 Dec 26;109(52):21336-41. doi: 10.1073/pnas.1218087109. Epub 2012 Nov 12.
The X-ray structure of the bacterial voltage-gated sodium channel NavAb has been reported in a conformation with a closed conduction pore. Comparison between this structure and the activated-open and resting-closed structures of the voltage-gated Kv1.2 potassium channel suggests that the voltage-sensor domains (VSDs) of the reported structure are not fully activated. Using the aforementioned structures of Kv1.2 as templates, molecular dynamics simulations are used to identify analogous functional conformations of NavAb. Specifically, starting from the NavAb crystal structure, conformations of the membrane-bound channel are sampled along likely pathways for activation of the VSD and opening of the pore domain. Gating charge computations suggest that a structural rearrangement comparable to that occurring between activated-open and resting-closed states is required to explain experimental values of the gating charge, thereby confirming that the reported VSD structure is likely an intermediate along the channel activation pathway. Our observation that the X-ray structure exhibits a low pore domain-opening propensity further supports this notion. The present molecular dynamics study also identifies conformations of NavAb that are seemingly related to the resting-closed and activated-open states. Our findings are consistent with recent structural and functional studies of the orthologous channels NavRh, NaChBac, and NavMs and offer possible structures for the functionally relevant conformations of NavAb.
细菌电压门控钠离子通道 NavAb 的 X 射线结构已被报道为关闭传导孔的构象。将该结构与电压门控 Kv1.2 钾通道的激活-开放和静息-关闭结构进行比较表明,报告结构的电压传感器结构域(VSD)未完全激活。使用上述 Kv1.2 结构作为模板,通过分子动力学模拟来识别 NavAb 的类似功能构象。具体来说,从 NavAb 晶体结构开始,沿着 VSD 激活和孔域打开的可能途径对膜结合通道的构象进行采样。门控电荷计算表明,需要进行类似于激活-开放和静息-关闭状态之间发生的结构重排,才能解释门控电荷的实验值,从而证实报告的 VSD 结构可能是通道激活途径中的一个中间状态。我们观察到 X 射线结构表现出低的孔域打开倾向,这进一步支持了这一观点。本分子动力学研究还确定了 NavAb 的构象,这些构象似乎与静息-关闭和激活-开放状态有关。我们的发现与最近关于同源通道 NavRh、NaChBac 和 NavMs 的结构和功能研究一致,并为 NavAb 的功能相关构象提供了可能的结构。