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抗菌肽天蚕素A的溶液构象:核磁共振与动态模拟退火研究

The solution conformation of the antibacterial peptide cecropin A: a nuclear magnetic resonance and dynamical simulated annealing study.

作者信息

Holak T A, Engström A, Kraulis P J, Lindeberg G, Bennich H, Jones T A, Gronenborn A M, Clore G M

机构信息

Max-Planck-Institut für Biochemie, Martinsried bei München, FRG.

出版信息

Biochemistry. 1988 Oct 4;27(20):7620-9. doi: 10.1021/bi00420a008.

Abstract

The solution conformation of the antibacterial polypeptide cecropin A from the Cecropia moth is investigated by nuclear magnetic resonance (NMR) spectroscopy under conditions where it adopts a fully ordered structure, as judged by previous circular dichroism studies [Steiner, H. (1982) FEBS Lett. 137, 283-287], namely, 15% (v/v) hexafluoroisopropyl alcohol. By use of a combination of two-dimensional NMR techniques the 1H NMR spectrum of cecropin A is completely assigned. A set of 243 approximate interproton distance restraints is derived from nuclear Overhauser enhancement (NOE) measurements. These, together with 32 distance restraints for the 16 intrahelical hydrogen bonds identified on the basis of the pattern of short-range NOEs, form the basis of a three-dimensional structure determination by dynamical simulated annealing [Nilges, M., Clore, G.M., & Gronenborn, A.M. (1988) FEBS Lett. 229, 317-324]. The calculations are carried out starting from three initial structures, an alpha-helix, an extended beta-strand, and a mixed alpha/beta structure. Seven independent structures are computed from each starting structure by using different random number seeds for the assignments of the initial velocities. All 21 calculated structures satisfy the experimental restraints, display very small deviations from idealized covalent geometry, and possess good nonbonded contacts. Analysis of the 21 converged structure indicates that there are two helical regions extending from residues 5 to 21 and from residues 24 to 37 which are very well defined in terms of both atomic root mean square differences and backbone torsion angles. For the two helical regions individually the average backbone rms difference between all pairs of structures is approximately 1 A. The long axes of the two helices lie in two planes, which are at an angle of 70-100 degrees to each other. The orientation of the helices within these planes, however, cannot be determined due to the paucity of NOEs between the two helices.

摘要

通过核磁共振(NMR)光谱法,在抗菌多肽天蚕素A呈现完全有序结构的条件下,研究了其溶液构象。此前的圆二色性研究[施泰纳,H.(1982年)《欧洲生物化学学会联合会快报》137,283 - 287]表明,该条件即15%(v/v)的六氟异丙醇。通过使用二维NMR技术的组合,天蚕素A的1H NMR谱被完全归属。从核Overhauser增强(NOE)测量中得出了一组243个近似的质子间距离限制。这些限制与基于短程NOE模式确定的16个螺旋内氢键的32个距离限制一起,构成了通过动态模拟退火[尼尔格斯,M.,克洛雷,G.M.,& 格伦恩伯恩,A.M.(1988年)《欧洲生物化学学会联合会快报》229,317 - 324]确定三维结构的基础。计算从三种初始结构开始,即α - 螺旋、伸展的β - 链和混合的α/β结构。通过为初始速度的赋值使用不同的随机数种子,从每种起始结构计算出七个独立的结构。所有21个计算出的结构都满足实验限制,与理想化的共价几何结构的偏差非常小,并且具有良好的非键合接触。对这21个收敛结构的分析表明,有两个螺旋区域,分别从残基5延伸到21以及从残基24延伸到37,就原子均方根差异和主链扭转角而言,这两个区域都定义得非常好。对于这两个螺旋区域单独而言,所有结构对之间的平均主链均方根差异约为1埃。两个螺旋的长轴位于两个平面内,这两个平面相互之间的夹角为70 - 100度。然而,由于两个螺旋之间的NOE较少,无法确定这些平面内螺旋的取向。

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