Pavelcik Frantisek
Department of Inorganic Chemistry, Faculty of Natural Sciences, Comenius University in Bratislava, 842 15 Bratislava, Slovak Republic.
Acta Crystallogr D Biol Crystallogr. 2004 Sep;60(Pt 9):1535-44. doi: 10.1107/S0907444904015252. Epub 2004 Aug 26.
A method for automatic building of protein structures has been developed. The method is based on the concept of flexible structure units. A structure unit is a fragment (group) of about ten atoms that is positioned in the electron density by a phased rotation and translation function. The positions, orientations and internal torsion angles of all structure units are refined by a phased flexible refinement. Individual structure units are connected into polyalanine chains. The sequence is aligned by combined marker and rotamer methods. The side chains are built either by the marker method and a full conformational search or by the rotamer method. Side chains are independent structure units. The structure unit represents a generalized atom and the group model can be refined by the least-squares method. The protein model is built with an accuracy of about 0.2 A at resolutions of 1.2-1.9 A. Partial results can be obtained at resolutions of between 2.0 and 2.3 A.
已开发出一种自动构建蛋白质结构的方法。该方法基于柔性结构单元的概念。结构单元是由大约十个原子组成的片段(基团),通过相位旋转和平移函数定位在电子密度中。所有结构单元的位置、取向和内部扭转角通过相位柔性精修进行优化。各个结构单元连接成聚丙氨酸链。序列通过标记和旋转异构体方法相结合进行比对。侧链通过标记方法和全构象搜索或旋转异构体方法构建。侧链是独立的结构单元。结构单元代表一个广义原子,基团模型可以通过最小二乘法进行优化。在分辨率为1.2 - 1.9埃时,构建的蛋白质模型精度约为0.2埃。在分辨率为2.0至2.3埃之间可获得部分结果。