Chik J K, Lindberg U, Schutt C E
Department of Chemistry, Princeton University, NJ 08544, USA.
J Mol Biol. 1996 Nov 8;263(4):607-23. doi: 10.1006/jmbi.1996.0602.
The structure of an "open state" of crystalline profilin:beta-actin has been solved to 2.65 A by X-ray crystallography. The open-state crystals, in 1.8 M potassium phosphate, have an expanded unit cell dimension in the c direction of 185.7 A compared with 171.9 A in the previously solved ammonium sulphate-stabilized "tight-state" structure. The unit cell change between the open and the tight states is accompanied by large subdomain movements in actin. Furthermore, the nucleotide in the open state is significantly more exposed to solvent, and local conformational changes in the hydrophobic pocket surrounding cysteine 374 occur during the transition to the tight state. Significant changes were observed at the N terminus and in the DNase-I binding loop. Neither the structure of profilin nor its contact with beta-actin are affected by the changes in the unit cell. Applying osmotic pressure to profilin:beta-actin crystals brings about a collapse of the unit cell comparable with that seen in the open to tight-state transition, enabling an estimate of the work required to cause this transformation of beta-actin in the crystals. The slight difference in energy between the open and collapsed states explains the extreme sensitivity of profilin:beta-actin crystals to changes in chemical and thermal environment.
通过X射线晶体学已将结晶型肌动蛋白结合蛋白:β-肌动蛋白“开放状态”的结构解析至2.65埃。在1.8 M磷酸钾中的开放状态晶体,其晶胞在c方向上的尺寸扩展至185.7埃,而在先前解析的硫酸铵稳定的“紧密状态”结构中为171.9埃。开放态与紧密态之间的晶胞变化伴随着肌动蛋白中亚结构域的大幅移动。此外,开放状态下的核苷酸更显著地暴露于溶剂中,并且在向紧密状态转变过程中,围绕半胱氨酸374的疏水口袋会发生局部构象变化。在N端和脱氧核糖核酸酶I结合环处观察到显著变化。肌动蛋白结合蛋白的结构及其与β-肌动蛋白的接触均不受晶胞变化的影响。对肌动蛋白结合蛋白:β-肌动蛋白晶体施加渗透压会导致晶胞塌陷,这与从开放态到紧密态转变中所见情况相当,从而能够估算使晶体中的β-肌动蛋白发生这种转变所需的功。开放态与塌陷态之间能量的细微差异解释了肌动蛋白结合蛋白:β-肌动蛋白晶体对化学和热环境变化的极端敏感性。