Marsh Joseph A, Forman-Kay Julie D
Molecular Structure and Function, Hospital for Sick Children, Ontario, Canada.
J Mol Biol. 2009 Aug 14;391(2):359-74. doi: 10.1016/j.jmb.2009.06.001. Epub 2009 Jun 6.
Obtaining detailed structural models of disordered states of proteins under nondenaturing conditions is important for a better understanding of both functional intrinsically disordered proteins and unfolded states of folded proteins. Extensive experimental characterization of the drk N-terminal SH3 domain unfolded state has shown that, although it appears to be highly disordered, it possesses significant nonrandom secondary and tertiary structure. In our previous attempts to generate structural models of the unfolded state using the program ENSEMBLE, we were limited by insufficient experimental restraints and conformational sampling. In this study, we have vastly expanded our experimental restraint set to include (1)H-(15)N residual dipolar couplings, small-angle X-ray scattering measurements, nitroxide paramagnetic relaxation enhancements, O(2)-induced (13)C paramagnetic shifts, hydrogen-exchange protection factors, and (15)N R(2) data, in addition to the previously used nuclear Overhauser effects, amino terminal Cu(2+)-Ni(2+) binding paramagnetic relaxation enhancements, J-couplings, chemical shifts, hydrodynamic radius, and solvent accessibility restraints. We have also implemented a new ensemble calculation methodology that uses iterative conformational sampling and seeks to calculate the simplest possible ensemble models. As a result, we can now generate ensembles that are consistent with much larger experimental data sets than was previously possible. Although highly heterogeneous and having broad molecular size distributions, the calculated drk N-terminal SH3 domain unfolded-state ensembles have very different properties than expected for random or statistical coils and possess significant nonnative alpha-helical structure and both native-like and nonnative tertiary structure.
在非变性条件下获得蛋白质无序状态的详细结构模型,对于更好地理解功能性内在无序蛋白和折叠蛋白的未折叠状态都很重要。对drk N端SH3结构域未折叠状态进行的广泛实验表征表明,尽管它看起来高度无序,但具有显著的非随机二级和三级结构。在我们之前使用ENSEMBLE程序生成未折叠状态结构模型的尝试中,受到实验约束不足和构象采样的限制。在本研究中,我们大幅扩展了实验约束集,除了之前使用的核Overhauser效应、氨基末端Cu(2+)-Ni(2+)结合顺磁弛豫增强、J耦合、化学位移、流体动力学半径和溶剂可及性约束外,还包括(1)H-(15)N剩余偶极耦合、小角X射线散射测量、氮氧自由基顺磁弛豫增强、O(2)诱导的(13)C顺磁位移、氢交换保护因子和(15)N R(2)数据。我们还实施了一种新的系综计算方法,该方法使用迭代构象采样并试图计算尽可能简单的系综模型。结果,我们现在可以生成与比以前更大的实验数据集一致的系综。尽管计算得到的drk N端SH3结构域未折叠状态系综高度异质且具有广泛的分子大小分布,但其性质与随机或统计卷曲的预期非常不同,具有显著的非天然α螺旋结构以及天然样和非天然三级结构。