Biggin P C, Smith G R, Shrivastava I, Choe S, Sansom M S
Department of Biochemistry, University of Oxford, UK.
Biochim Biophys Acta. 2001 Feb 9;1510(1-2):1-9. doi: 10.1016/s0005-2736(00)00345-x.
We have performed simulations of both a single potassium ion and a single sodium ion within the pore of the bacterial potassium channel KcsA. For both ions there is a dehydration energy barrier at the cytoplasmic mouth suggesting that the crystal structure is a closed conformation of the channel. There is a potential energy barrier for a sodium ion in the selectivity filter that is not seen for potassium. Radial distribution functions for both ions with the carbonyl oxygens of the selectivity filter indicate that sodium may interact more tightly with the filter than does potassium. This suggests that the key to the ion selectivity of KcsA is the greater dehydration energy of Na(+) ions, and helps to explain the block of KcsA by internal Na(+) ions.
我们对细菌钾通道KcsA孔内的单个钾离子和单个钠离子进行了模拟。对于这两种离子,在胞质侧孔口处都存在脱水能垒,这表明晶体结构是通道的一种关闭构象。在选择性过滤器中,钠离子存在一个钾离子所没有的势能垒。两种离子与选择性过滤器羰基氧的径向分布函数表明,钠离子与过滤器的相互作用可能比钾离子更紧密。这表明KcsA离子选择性的关键在于Na(+)离子更大的脱水能,并有助于解释内部Na(+)离子对KcsA的阻断作用。