Driscoll P C, Gronenborn A M, Beress L, Clore G M
Laboratory of Chemical Physics, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, Maryland 20892.
Biochemistry. 1989 Mar 7;28(5):2188-98. doi: 10.1021/bi00431a033.
The three-dimensional solution structure of the antihypertensive and antiviral protein BDS-I from the sea anemone Anemonia sulcata has been determined on the basis of 489 interproton and 24 hydrogen-bonding distance restraints supplemented by 23 phi backbone and 21 chi 1 side-chain torsion angle restraints derived from nuclear magnetic resonance (NMR) measurements. A total of 42 structures is calculated by a hybrid metric matrix distance geometry-dynamical simulated annealing approach. Both the backbone and side-chain atom positions are well defined. The average atomic rms difference between the 42 individual SA structures and the mean structure obtained by averaging their coordinates is 0.67 +/- 0.12 A for the backbone atoms and 0.90 +/- 0.17 A for all atoms. The core of the protein is formed by a triple-stranded antiparallel beta-sheet composed of residues 14-16 (strand 1), 30-34 (strand 2), and 37-41 (strand 3) with an additional mini-antiparallel beta-sheet at the N-terminus (residues 6-9). The first and second strands of the triple-stranded antiparallel beta-sheet are connected by a long exposed loop (residues 17-30). A number of side-chain interactions are discussed in light of the structure.
基于489个质子间距离和24个氢键距离约束,并辅以通过核磁共振(NMR)测量得到的23个φ主链和21个χ1侧链扭转角约束,确定了来自红海葵的抗高血压和抗病毒蛋白BDS-I的三维溶液结构。采用混合度量矩阵距离几何 - 动力学模拟退火方法共计算出42种结构。主链和侧链原子位置都定义明确。42个单独的模拟退火(SA)结构与通过平均它们的坐标得到的平均结构之间,主链原子的平均原子均方根差为0.67±0.12 Å,所有原子的平均原子均方根差为0.90±0.17 Å。该蛋白质的核心由一个三链反平行β折叠组成,其由残基14 - 16(链1)、30 - 34(链2)和37 - 41(链3)组成,在N端(残基6 - 9)还有一个额外的小反平行β折叠。三链反平行β折叠的第一链和第二链通过一个长的暴露环(残基17 - 30)连接。根据该结构讨论了一些侧链相互作用。