Moriarty Nigel W, Tronrud Dale E, Adams Paul D, Karplus P Andrew
Lawrence Berkeley National Laboratory, Berkeley, CA, USA.
FEBS J. 2014 Sep;281(18):4061-71. doi: 10.1111/febs.12860. Epub 2014 Jun 17.
Ideal values of bond angles and lengths used as external restraints are crucial for the successful refinement of protein crystal structures at all but the highest of resolutions. The restraints in common use today have been designed on the assumption that each type of bond or angle has a single ideal value that is independent of context. However, recent work has shown that the ideal values are, in fact, sensitive to local conformation, and, as a first step towards using such information to build more accurate models, ultra-high-resolution protein crystal structures have been used to derive a conformation-dependent library (CDL) of restraints for the protein backbone [Berkholz et al. (2009) Structure 17, 1316-1325]. Here, we report the introduction of this CDL into the phenix package and the results of test refinements of thousands of structures across a wide range of resolutions. These tests show that use of the CDL yields models that have substantially better agreement with ideal main-chain bond angles and lengths and, on average, a slightly enhanced fit to the X-ray data. No disadvantages of using the backbone CDL are apparent. In phenix, use of the CDL can be selected by simply specifying the cdl = True option. This successful implementation paves the way for further aspects of the context dependence of ideal geometry to be characterized and applied to improve experimental and predictive modeling accuracy.
用作外部约束的键角和键长的理想值对于除最高分辨率外的所有蛋白质晶体结构的成功精修至关重要。当今常用的约束是基于这样的假设设计的,即每种类型的键或角度都有一个独立于上下文的单一理想值。然而,最近的研究表明,理想值实际上对局部构象敏感,并且,作为利用此类信息构建更准确模型的第一步,超高分辨率蛋白质晶体结构已被用于推导蛋白质主链的构象依赖库(CDL)[伯克霍尔兹等人(2009年)《结构》17卷,1316 - 1325页]。在此,我们报告将此CDL引入phenix软件包以及对数千个不同分辨率结构进行测试精修的结果。这些测试表明,使用CDL产生的模型与理想主链键角和键长的一致性显著更好,并且平均而言,对X射线数据的拟合略有增强。使用主链CDL没有明显的缺点。在phenix中,只需指定cdl = True选项即可选择使用CDL。这一成功实施为进一步表征理想几何结构的上下文依赖性并应用于提高实验和预测建模准确性铺平了道路。