论文标题

定义明确的X射线和NMR结构的核心包装相同

Core packing of well-defined x-ray and NMR structures is the same

论文作者

Grigas, Alex T., Liu, Zhuoyi, Regan, Lynne, O'Hern, Corey S.

论文摘要

大量研究研究了通过溶液NMR光谱法确定的蛋白质结构与X射线晶体学确定的蛋白质结构之间的差异和相似性。一个基本的问题是,观察到的差异是否是由于方法的不同,还是蛋白在溶液中与晶体状态中蛋白质行为的差异。在这里,我们比较了使用越来越多的约束数量和类型确定的高分辨率蛋白质晶体结构和NMR结构中的疏水核的特性。先前的研究报告说,与高分辨率X射线晶体结构相比,许多NMR结构具有密集的核心。我们目前的工作对此结果进行了更详细的调查,发现这些NMR结构倾向于违反蛋白质立体化学的基本特征,例如小的非键入原子重叠,少量Ramachandran和侧链二面角异常值。我们发现,NMR结构用更多的约束解决,并且没有显着违反立体化学,具有与X射线晶体学在高分辨率下确定的疏水核,其大小和堆积分数与它们的对应物相似。这些结果使我们得出结论,至少关于核心填料特性,由NMR和X射线晶体学确定的高质量结构是相同的,而较早报道的差异很可能是方法论的结果,而不是两个不同环境中蛋白质之间的基本差异。

Numerous studies have investigated the differences and similarities between protein structures determined by solution NMR spectroscopy and those determined by x-ray crystallography. A fundamental question is whether any observed differences are due to differing methodologies, or to differences in the behavior of proteins in solution versus in the crystalline state. Here, we compare the properties of the hydrophobic cores of high-resolution protein crystal structures and those in NMR structures, determined using increasing numbers and types of restraints. Prior studies have reported that many NMR structures have denser cores compared to those of high-resolution x-ray crystal structures. Our current work investigates this result in more detail, and finds that these NMR structures tend to violate basic features of protein stereochemistry, such as small non-bonded atomic overlaps and few Ramachandran and side chain dihedral angle outliers. We find that NMR structures solved with more restraints, and which do not significantly violate stereochemistry, have hydrophobic cores that have a similar size and packing fraction as their counterparts determined by x-ray crystallography at high-resolution. These results lead us to conclude that, at least regarding the core packing properties, high-quality structures determined by NMR and x-ray crystallography are the same, and the differences reported earlier are most likely a consequence of methodology, rather than fundamental differences between the protein in the two different environments.

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