Achari A, Hale S P, Howard A J, Clore G M, Gronenborn A M, Hardman K D, Whitlow M
Protein Engineering Department, Enzon, Incorporated, Gaithersburg, Maryland 20877.
Biochemistry. 1992 Nov 3;31(43):10449-57. doi: 10.1021/bi00158a006.
The structure of the B2 immunoglobulin-binding domain of streptococcal protein G has been determined at 1.67-A resolution using a combination of single isomorphous replacement (SIR) phasing and manual fitting of the coordinates of the NMR structure of B1 domain of streptococcal protein G [Gronenborn, A. M., et al. (1991) Science 253, 657-661]. The final R value was 0.191 for data between 8.0 and 1.67 A. The structure described here has 13 residues preceding the 57-residue Ig-binding domain and 13 additional residues following it, for a total of 83 residues. The 57-residue binding domain is well-determined in the structure, having an average B factor of 18.0. Only residues 8-77 could be located in the electron density maps, with the ends of the structure fading into disorder. Like the B1 domain, the B2 domain consists of four beta-strands and a single helix lying diagonally across the beta-sheet, with a -1, +3 chi, -1 topology. This small structure is extensively hydrogen-bonded and has a relatively large hydrophobic core. These structural observations may account for the exceptional stability of protein G. A comparison of the B2 domain X-ray structure and the B1 domain NMR structure showed minor differences in the turn between strands and two and a slight displacement of the helix relative to the sheet. Hydrogen bonds between crystallographically related molecules account for most of these differences.
利用单同晶置换(SIR)相位法以及对链球菌蛋白G的B1结构域核磁共振结构坐标进行手动拟合相结合的方法,已在1.67埃分辨率下确定了链球菌蛋白G的B2免疫球蛋白结合结构域的结构[格罗嫩伯恩,A. M.等人(1991年)《科学》253, 657 - 661]。对于8.0至1.67埃之间的数据,最终R值为0.191。此处描述的结构在57个残基的Ig结合结构域之前有13个残基,之后还有13个额外的残基,总共83个残基。57个残基的结合结构域在结构中确定得很好,平均B因子为18.0。在电子密度图中只能定位到残基8 - 77,结构两端逐渐变得无序。与B1结构域一样,B2结构域由四条β链和一条对角穿过β折叠的单螺旋组成,具有 - 1, +3 χ, - 1拓扑结构。这个小结构广泛地形成氢键,并且有一个相对较大的疏水核心。这些结构观察结果可能解释了蛋白G的异常稳定性。B2结构域的X射线结构与B1结构域的核磁共振结构的比较表明,链间转角以及螺旋相对于折叠的位置有细微差异。晶体学相关分子之间的氢键解释了这些差异中的大部分。