Alexandrescu A T, Shortle D
Department of Biological Chemistry, Johns Hopkins University School of Medicine, Baltimore, MD 21205.
J Mol Biol. 1994 Sep 30;242(4):527-46. doi: 10.1006/jmbi.1994.1598.
In order to characterize the dynamic properties of the denatured state of staphylococcal nuclease, R1, R2, and NOE relaxation parameters have been measured for the backbone 15N nuclei of a 131 residue fragment that serves as a model of the denatured state under non-denaturing conditions. The relaxation data indicate a wide range of amplitudes for segmental motion and are inconsistent with a random coil conformation. An optimal value of 7.8 ns was obtained for the molecular rotational correlation time tau m based on the analysis of the 79 residues for which R1, R2, and NOE relaxation data could be obtained. This value corresponds roughly to the slowest detectable motion on the nanosecond time scale and is of a magnitude consistent with global tumbling of a large portion of the molecule. For the majority of residues, experimental data could be described most adequately in terms of a modified "model-free" formalism which includes contributions from internal motions on both an intermediate (tau e) and a fast time scale (tau f) in the context of slow overall tumbling (tau m). The generalized order parameters S2, which gives the amplitude of motions on time scales faster than tau m, correlates with sequence hydrophobicity and suggests a relationship between chain flexibility and sequence propensity for hydrophobic collapse. The fractional populations of three alpha-helices in the protein show a stronger correlation with S2 values and hydrophobicities than with intrinsic helix propensities. These observations suggest that secondary structure may be preferentially stabilized in hydrophobic segments of the sequence.
为了表征葡萄球菌核酸酶变性状态的动力学性质,已对一个131个残基片段的主链15N核的R1、R2和NOE弛豫参数进行了测量,该片段在非变性条件下作为变性状态的模型。弛豫数据表明片段运动的幅度范围很广,与无规卷曲构象不一致。基于对79个可获得R1、R2和NOE弛豫数据的残基的分析,分子旋转相关时间τm的最佳值为7.8纳秒。该值大致对应于纳秒时间尺度上最慢的可检测运动,并且其大小与分子大部分的整体翻滚一致。对于大多数残基,实验数据可以用一种改进的“无模型”形式最充分地描述,该形式在整体缓慢翻滚(τm)的背景下包括中间时间尺度(τe)和快速时间尺度(τf)上内部运动的贡献。广义序参数S2给出了比τm更快时间尺度上的运动幅度,与序列疏水性相关,并表明链柔性与疏水塌缩的序列倾向之间存在关系。蛋白质中三个α螺旋的分数丰度与S2值和疏水性的相关性比与内在螺旋倾向的相关性更强。这些观察结果表明二级结构可能在序列的疏水片段中优先稳定。