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短杆菌肽A双螺旋构象体的高分辨率结构及其动力学意义

High-resolution structure and dynamic implications for a double-helical gramicidin A conformer.

作者信息

Pascal S M, Cross T A

机构信息

Institute of Molecular Biophysics, Florida State University, Tallahassee 32306-3006.

出版信息

J Biomol NMR. 1993 Sep;3(5):495-513. doi: 10.1007/BF00174606.

Abstract

The high-resolution structure of a dimeric conformer of gramicidin A, a 15-residue polypeptide, has been determined in the mixed-solvent system of benzene and ethanol by 2D NMR techniques. NOEs, coupling constants and hydrogen-bond information were used to generate 744 experimental constraints for the dimer. Stereoassignment of most beta-methylene groups was achieved by analysis of 3J alpha beta, d alpha beta(i,i), dN beta(i,i) and dN beta(i + 1,i) distances, and consideration of the initial backbone structure determinations. Stereoassignment of several leucine methyl groups was accomplished via a distance geometry/simulated annealing routine, used for structure determination and refinement. The relatively static backbone structure was determined first and held rigid while side-chain conformations were calculated. This procedure is evaluated versus standard NMR structure determination protocols. The backbone is an antiparallel intertwined double helix, with 5.6-5.7 residues per turn, a total dimer length of 36-37 A, and a pore width of 2.5-3.0 A (van der Waals to van der Waals). The structure and dynamics of the side chains are discussed in depth, with careful attention for both the convergence of structures and the residual constraint violations per residue. Side-chain positions impart substantial amphipathic character to the helix, which could influence the conformational change that takes place upon membrane insertion of this channel-forming polypeptide.

摘要

通过二维核磁共振技术,已在苯和乙醇的混合溶剂体系中确定了15个残基的多肽短杆菌肽A二聚体构象异构体的高分辨率结构。利用核Overhauser效应(NOEs)、耦合常数和氢键信息为该二聚体生成了744个实验约束条件。通过分析3Jαβ、δαβ(i,i)、dNβ(i,i)和dNβ(i + 1,i)距离,并考虑初始主链结构测定结果,实现了大多数β-亚甲基的立体归属。通过用于结构测定和优化的距离几何/模拟退火程序完成了几个亮氨酸甲基的立体归属。首先确定相对静态的主链结构并使其保持刚性,然后计算侧链构象。将该程序与标准核磁共振结构测定方案进行了评估。主链是一个反平行缠绕的双螺旋,每圈有5.6 - 5.7个残基,二聚体总长度为36 - 37 Å,孔宽为2.5 - 3.0 Å(范德华半径到范德华半径)。深入讨论了侧链的结构和动力学,同时仔细关注结构的收敛性和每个残基的残余约束违反情况。侧链位置赋予螺旋显著的两亲性特征,这可能会影响这种形成通道的多肽插入膜时发生的构象变化。

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