Massad Tariq, Jarvet Jüri, Tanner Risto, Tomson Katrin, Smirnova Julia, Palumaa Peep, Sugai Mariko, Kohno Toshiyuki, Vanatalu Kalju, Damberg Peter
Department of Biochemistry and Biophysics, Stockholm University, Svante Arrhenius v. 12, 106 91, Stockholm, Sweden.
J Biomol NMR. 2007 Jun;38(2):107-23. doi: 10.1007/s10858-007-9150-1. Epub 2007 Apr 26.
In this paper, we present a new method for structure determination of flexible "random-coil" peptides. A numerical method is described, where the experimentally measured 3J(H(alpha)Nalpha) and [3J(H(alpha)Nalpha+1 couplings, which depend on the phi and psi dihedral angles, are analyzed jointly with the information from a coil-library through a maximum entropy approach. The coil-library is the distribution of dihedral angles found outside the elements of the secondary structure in the high-resolution protein structures. The method results in residue specific joint phi,psi-distribution functions, which are in agreement with the experimental J-couplings and minimally committal to the information in the coil-library. The 22-residue human peptide hormone motilin, uniformly 15N-labeled was studied. The 3J(H(alpha)-N(i+1)) were measured from the E.COSY pattern in the sequential NOESY cross-peaks. By employing homodecoupling and an in-phase/anti-phase filter, sharp H(alpha)-resonances (about 5 Hz) were obtained enabling accurate determination of the coupling with minimal spectral overlap. Clear trends in the resulting phi,psi-distribution functions along the sequence are observed, with a nascent helical structure in the central part of the peptide and more extended conformations of the receptor binding N-terminus as the most prominent characteristics. From the phi,psi-distribution functions, the contribution from each residue to the thermodynamic entropy, i.e., the segmental entropies, are calculated and compared to segmental entropies estimated from 15N-relaxation data. Remarkable agreement between the relaxation and J-couplings based methods is found. Residues belonging to the nascent helix and the C-terminus show segmental entropies, of approximately -20 J K(-1) mol(-1) and -12 J K(-1) mol(-1), respectively, in both series. The agreement between the two estimates of the segmental entropy, the agreement with the observed J-couplings, the agreement with the CD experiments, and the assignment of population to sterically allowed conformations show that the phi,psi-distribution functions are indeed meaningful and useful descriptions of the conformational preferences for each residue in this flexible peptide.
在本文中,我们提出了一种用于确定柔性“无规卷曲”肽结构的新方法。描述了一种数值方法,其中通过最大熵方法,将实验测量的依赖于φ和ψ二面角的3J(H(α)Nα)和[3J(H(α)Nα + 1]耦合与来自卷曲库的信息联合分析。卷曲库是在高分辨率蛋白质结构中二级结构元件之外发现的二面角分布。该方法产生了残基特异性的联合φ,ψ分布函数,其与实验J耦合一致,并且对卷曲库中的信息承诺最小。研究了均匀15N标记的22个残基的人肽激素胃动素。从顺序NOESY交叉峰中的E.COSY图谱测量3J(H(α)-N(i + 1))。通过采用同核去耦和同相/反相滤波器,获得了尖锐的H(α)共振(约5 Hz),从而能够在最小光谱重叠的情况下准确确定耦合。沿着序列观察到所得φ,ψ分布函数的明显趋势,肽中部的新生螺旋结构和受体结合N端更伸展的构象是最突出的特征。从φ,ψ分布函数计算每个残基对热力学熵的贡献,即片段熵,并与从15N弛豫数据估计的片段熵进行比较。发现基于弛豫和J耦合的方法之间有显著一致性。在两个系列中,属于新生螺旋和C端的残基分别显示出约-20 J K(-1) mol(-1)和-12 J K(-1) mol(-1)的片段熵。片段熵的两种估计之间的一致性以及与观察到的J耦合的一致性、与CD实验的一致性以及将群体分配给空间允许的构象表明,φ,ψ分布函数确实是对这种柔性肽中每个残基构象偏好的有意义且有用的描述。