Domene Carmen, Furini Simone
Physical and Theoretical Chemistry Laboratory, Department of Chemistry, University of Oxford, Oxford OX1 3QZ, UK.
J Mol Biol. 2009 Jun 12;389(3):637-45. doi: 10.1016/j.jmb.2009.04.038. Epub 2009 Apr 23.
Potassium channels are a diverse family of integral membrane proteins through which K(+) can pass selectively. There is ongoing debate about the nature of conformational changes associated with the opening/closing and conductive/nonconductive states of potassium channels. The channels partly exert their function by varying their conductance through a mechanism known as C-type inactivation. Shortly after the activation of K(+) channels, their selectivity filter stops conducting ions at a rate that depends on various stimuli. The molecular mechanism of C-type inactivation has not been fully understood yet. However, the X-ray structure of the KcsA channel obtained in the presence of low K(+) concentration is thought to be representative of a K(+) channel in the C-type inactivated state. Here, extensive, fully atomistic molecular dynamics and free-energy simulations of the low-K(+) KcsA structure in an explicit lipid bilayer are performed to evaluate the stability of this structure and the selectivity of its binding sites. We find that the low-K(+) KcsA structure is stable on the timescale of the molecular dynamics simulations performed, and that ions preferably remain in S1 and S4. In the absence of ions, the selectivity filter evolves toward an asymmetric architecture, as already observed in other computations of the high-K(+) structure of KcsA and KirBac. The low-K(+) KcsA structure is not permeable by Na(+), K(+), or Rb(+), and the selectivity of its binding sites is different from that of the high-K(+) structure.
钾通道是一类多样的整合膜蛋白家族,钾离子(K⁺)可通过这些通道进行选择性通透。关于与钾通道的开放/关闭以及导通/非导通状态相关的构象变化的本质,目前仍存在争议。这些通道部分地通过一种称为C型失活的机制改变其电导率来发挥功能。在钾离子通道激活后不久,其选择性过滤器会以取决于各种刺激的速率停止传导离子。C型失活的分子机制尚未完全被理解。然而,在低钾(K⁺)浓度存在下获得的KcsA通道的X射线结构被认为代表了处于C型失活状态的钾通道。在此,我们对处于明确脂质双分子层中的低钾KcsA结构进行了广泛的、全原子分子动力学和自由能模拟,以评估该结构的稳定性及其结合位点的选择性。我们发现,在进行分子动力学模拟的时间尺度上,低钾KcsA结构是稳定的,并且离子更倾向于留在S1和S4中。在没有离子的情况下,选择性过滤器会朝着不对称结构演变,这在之前对KcsA和KirBac的高钾结构的其他计算中已经观察到。低钾KcsA结构对钠离子(Na⁺)、钾离子(K⁺)或铷离子(Rb⁺)均不可通透,并且其结合位点的选择性与高钾结构不同。