Vijayan Ranjit, Plested Andrew J R, Mayer Mark L, Biggin Philip C
Department of Biochemistry, University of Oxford, United Kingdom.
Biophys J. 2009 Mar 4;96(5):1751-60. doi: 10.1016/j.bpj.2008.11.039.
Ions play a modulatory role in many proteins. Kainate receptors, members of the ionotropic glutamate receptor family, require both monovalent anions and cations in the extracellular milieu for normal channel activity. Molecular dynamics simulations and extensive relative binding free energy calculations using thermodynamic integration were performed to elucidate the rank order of binding of monovalent cations, using x-ray crystal structures of the GluR5 kainate receptor dimers with bound cations from the alkali metal family. The simulations show good agreement with experiments and reveal that the underlying backbone structure of the binding site is one of the most rigid regions of the protein. A simplified model where the partial charge of coordinating oxygens was varied suggests that selectivity arises from the presence of two carboxylate groups. Furthermore, using a potential of mean force derived from umbrella sampling, we show that the presence of cations lower the energy barrier for anion approach and binding in the buried anion binding cavity.
离子在许多蛋白质中发挥调节作用。红藻氨酸受体是离子型谷氨酸受体家族的成员,其正常通道活性需要细胞外环境中的单价阴离子和阳离子。利用来自碱金属家族的结合阳离子的GluR5红藻氨酸受体二聚体的X射线晶体结构,进行了分子动力学模拟和使用热力学积分的广泛相对结合自由能计算,以阐明单价阳离子的结合顺序。模拟结果与实验结果吻合良好,并揭示了结合位点的基础骨架结构是蛋白质中最刚性的区域之一。一个配位氧部分电荷可变的简化模型表明,选择性源于两个羧基的存在。此外,利用伞形采样得到的平均力势,我们表明阳离子的存在降低了埋藏的阴离子结合腔中阴离子接近和结合的能垒。