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核磁共振15N弛豫和结构研究揭示了巴司星C40/82A中缓慢的构象交换。

NMR 15N relaxation and structural studies reveal slow conformational exchange in barstar C40/82A.

作者信息

Wong K B, Fersht A R, Freund S M

机构信息

MRC Unit for Protein Function and Design, Cambridge Centre for Protein Engineering, University Chemical Laboratory, UK.

出版信息

J Mol Biol. 1997 May 2;268(2):494-511. doi: 10.1006/jmbi.1997.0989.

Abstract

Barstar an 89-residue protein consisting of four helices and a three-stranded parallel beta-sheet, is the intracellular inhibitor of the endoribonuclease barnase. Barstar C40/82A, a mutant in which the two cysteine residues have been replaced by alanine, has been used as a pseudo wild-type in folding studies and in the crystal structure of the barnase:barstar C40/82A complex. We have determined a high resolution solution structure of barstar C40/82A. The structures of barstar C40/82A and the wild-type are superimposable. A comparison with the crystal structure of the barnase:barstar C40/82A complex revealed subtle differences in the regions involved in the binding of barstar to barnase. Side-chain rotations of residues Asn33, Asp35 and Asp39 and a movement of the binding loop (Pro27-Glu32) towards the binding site of barnase facilitate the formation of interface hydrogen bonds and aromatic contacts in the complex. Extreme line broadening and missing signals in 1H-15N correlation spectra indicate substantial conformational exchange for a large subset of residues. 15N relaxation data at two magnetic field strengths, 11.74 T and 14.10 T, were used to estimate exchange contributions and to map the spectral density function at five frequencies: 0, 50, 60, 450 and 540 MHz. Based on these results, model-free calculations with the inclusion of estimated exchange contributions were used to derive order parameters and internal correlation times. The validity of this approach has been investigated with model-free calculations that incorporate longitudinal relaxation rates and heteronuclear 1H-15N NOE data only at 11.74 T and 14.10 T. The relaxation data suggest substantial conformational exchange in regions of barstar C40/82A, including the binding loop, the second and the third helices, and the second and the third strands. Amide proton exchange experiments suggest a stable hydrogen bond network for all helices and sheets except the third helix and the C-terminal of the second and the third strands. The combined results indicate a rigid body movement of the second helix and twisting motions of the beta-sheet of barstar, which might be important for the interaction with barnase.

摘要

Barstar是一种由89个氨基酸残基组成的蛋白质,包含四个螺旋和一个三链平行β折叠片层,是核糖核酸酶barnase的细胞内抑制剂。Barstar C40/82A是一种突变体,其中两个半胱氨酸残基被丙氨酸取代,已被用作折叠研究以及barnase:Barstar C40/82A复合物晶体结构研究中的假野生型。我们已经确定了Barstar C40/82A的高分辨率溶液结构。Barstar C40/82A和野生型的结构是可叠加的。与barnase:Barstar C40/82A复合物晶体结构的比较揭示了Barstar与barnase结合区域的细微差异。Asn33、Asp35和Asp39残基的侧链旋转以及结合环(Pro27-Glu32)向barnase结合位点的移动促进了复合物中界面氢键和芳香族接触的形成。1H-15N相关谱中的极宽线宽和缺失信号表明大量残基存在显著的构象交换。利用11.74 T和14.10 T两个磁场强度下的15N弛豫数据来估计交换贡献,并在0、50、60、450和540 MHz五个频率下绘制谱密度函数。基于这些结果,使用包含估计交换贡献的无模型计算来推导序参数和内部相关时间。通过仅在11.74 T和14.10 T下纳入纵向弛豫率和异核1H-15N NOE数据的无模型计算,研究了该方法的有效性。弛豫数据表明Barstar C40/82A的区域存在显著的构象交换,包括结合环、第二和第三螺旋以及第二和第三链。酰胺质子交换实验表明,除了第三螺旋以及第二和第三链的C末端外,所有螺旋和折叠片层都有稳定的氢键网络。综合结果表明Barstar的第二螺旋有刚体运动以及β折叠片层有扭曲运动,这可能对与barnase的相互作用很重要。

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