Kurinov I V, Harrison R W
Department of Pharmacology, Thomas Jefferson University, Philadelphia, PA 19107, USA.
Acta Crystallogr D Biol Crystallogr. 1995 Jan 1;51(Pt 1):98-109. doi: 10.1107/S0907444994009261.
Lysozyme structures at six different temperatures in the range 95-295 K have been determined using X-ray crystallography at a resolution of 1.7 A. The crystals at lower temperatures had a 7.4% decrease in the unit-cell volume. The volume change was discontinuous with the volume being near 238 000 A(3) from 295 to 250 K and about 220 200 A(3) below 180 K. The thermal expansion of the protein has been analyzed and shows anisotropy, which is correlated with local atomic packing and secondary-structure elements. The lysozyme structure at low temperature is nearly the same as that at high temperature, with only small relative translations and rotations of structure elements including a hinge-bending rearrangement of two domains. Because of a considerable increase of lattice disorder at low temperature dynamical analysis of internal motion is difficult. The analysis of structural and dynamical properties of well ordered protein-bound water has been carried out.
利用X射线晶体学在1.7埃的分辨率下测定了溶菌酶在95 - 295K范围内六个不同温度下的结构。较低温度下的晶体晶胞体积减小了7.4%。体积变化是不连续的,在295至250K时体积接近238000埃³,在180K以下约为220200埃³。对蛋白质的热膨胀进行了分析,结果显示出各向异性,这与局部原子堆积和二级结构元件相关。低温下的溶菌酶结构与高温下几乎相同,结构元件仅有小的相对平移和旋转,包括两个结构域的铰链弯曲重排。由于低温下晶格无序度显著增加,内部运动的动力学分析变得困难。已对有序的蛋白质结合水的结构和动力学性质进行了分析。