Kerr I D, Sansom M S
Laboratory of Molecular Biophysics, University of Oxford, England.
Biophys J. 1997 Aug;73(2):581-602. doi: 10.1016/S0006-3495(97)78095-0.
Although there is a large body of site-directed mutagenesis data that identify the pore-lining sequence of the voltage-gated potassium channel, the structure of this region remains unknown. We have interpreted the available biochemical data as a set of topological and orientational restraints and employed these restraints to produce molecular models of the potassium channel pore region, H5. The H5 sequence has been modeled either as a tetramer of membrane-spanning beta-hairpins, thus producing an eight-stranded beta-barrel, or as a tetramer of incompletely membrane-spanning alpha-helical hairpins, thus producing an eight-staved alpha-helix bundle. In total, restraints-directed modeling has produced 40 different configurations of the beta-barrel model, each configuration comprising an ensemble of 20 structures, and 24 different configurations of the alpha-helix bundle model, each comprising an ensemble of 24 structures. Thus, over 1300 model structures for H5 have been generated. Configurations have been ranked on the basis of their predicted pore properties and on the extent of their agreement with the biochemical data. This ranking is employed to identify particular configurations of H5 that may be explored further as models of the pore-lining region of the voltage-gated potassium channel pore.
尽管有大量定点诱变数据确定了电压门控钾通道的孔衬序列,但该区域的结构仍然未知。我们已将现有的生化数据解读为一组拓扑和取向限制条件,并利用这些限制条件构建了钾通道孔区域H5的分子模型。H5序列的建模方式有两种:一种是跨膜β-发夹的四聚体,从而形成一个八链β-桶;另一种是不完全跨膜的α-螺旋发夹的四聚体,从而形成一个八杆α-螺旋束。总体而言,基于限制条件的建模产生了40种不同的β-桶模型构型,每种构型包含20个结构的集合,以及24种不同的α-螺旋束模型构型,每种构型包含24个结构的集合。因此,已经生成了超过1300个H5的模型结构。构型已根据其预测的孔特性以及与生化数据的吻合程度进行了排序。这种排序用于识别作为电压门控钾通道孔的孔衬区域模型可能需要进一步探索的特定H5构型。