Bhattacharya Nilakshee, Yi Myunggi, Zhou Huan-Xiang, Logan Timothy M
Department of Chemistry and Biochemistry, Florida State University, Tallahassee, FL 32306, USA.
J Mol Biol. 2007 Dec 7;374(4):977-92. doi: 10.1016/j.jmb.2007.09.063. Epub 2007 Oct 31.
The diphtheria toxin repressor contains an SH3-like domain that forms an intramolecular complex with a proline-rich (Pr) peptide segment and stabilizes the inactive state of the repressor. Upon activation of diphtheria toxin repressor (DtxR) by transition metals, this intramolecular complex must dissociate as the SH3 domain and Pr segment form different interactions in the active repressor. Here we investigate the dynamics of this intramolecular complex using backbone amide nuclear spin relaxation rates determined using NMR spectroscopy and molecular dynamics trajectories. The SH3 domain in the unbound and bound states showed typical dynamics in that the secondary structures were fairly ordered with high generalized order parameters and low effective correlation times, while residues in the loops connecting beta-strands exhibited reduced generalized order parameters and required additional motional terms to adequately model the relaxation rates. Residues forming the Pr segment exhibited low-order parameters with internal rotational correlation times on the order of 0.6 ns-1 ns. Further analysis showed that the SH3 domain was rich in millisecond time scale motions while the Pr segment exhibited motions on the 100 mus time scale. Molecular dynamics simulations indicated structural rearrangements that may contribute to the observed relaxation rates and, together with the observed relaxation rate data, suggested that the Pr segment exhibits a binding<-->unbinding equilibrium. The results here provide new insights into the nature of the intramolecular complex and provide a better understanding of the biological role of the SH3 domain in regulating DtxR activity.
白喉毒素阻遏蛋白包含一个类SH3结构域,该结构域与富含脯氨酸(Pr)的肽段形成分子内复合物,并稳定阻遏蛋白的无活性状态。在过渡金属激活白喉毒素阻遏蛋白(DtxR)后,随着SH3结构域和Pr肽段在活性阻遏蛋白中形成不同的相互作用,这种分子内复合物必须解离。在这里,我们使用核磁共振光谱法测定的主链酰胺核自旋弛豫率和分子动力学轨迹来研究这种分子内复合物的动力学。未结合和结合状态下的SH3结构域表现出典型的动力学特征,即二级结构相当有序,具有高广义序参数和低有效相关时间,而连接β链的环中的残基表现出降低的广义序参数,并且需要额外的运动项来充分模拟弛豫率。形成Pr肽段的残基表现出低序参数,其内部旋转相关时间约为0.6纳秒至1纳秒。进一步分析表明,SH3结构域富含毫秒时间尺度的运动,而Pr肽段表现出100微秒时间尺度的运动。分子动力学模拟表明,结构重排可能有助于观察到的弛豫率,并且与观察到的弛豫率数据一起表明,Pr肽段表现出结合<-->解离平衡。这里的结果为分子内复合物的性质提供了新的见解,并更好地理解了SH3结构域在调节DtxR活性中的生物学作用。