Chopra Gaurav, Summa Christopher M, Levitt Michael
Department of Structural Biology, Stanford University, Stanford, CA 94305-5126, USA.
Proc Natl Acad Sci U S A. 2008 Dec 23;105(51):20239-44. doi: 10.1073/pnas.0810818105. Epub 2008 Dec 10.
One of the most challenging problems in protein structure prediction is improvement of homology models (structures within 1-3 A C(alpha) rmsd of the native structure), also known as the protein structure refinement problem. It has been shown that improvement could be achieved using in vacuo energy minimization with molecular mechanics and statistically derived continuously differentiable hybrid knowledge-based (KB) potential functions. Globular proteins, however, fold and function in aqueous solution in vivo and in vitro. In this work, we study the role of solvent in protein structure refinement. Molecular dynamics in explicit solvent and energy minimization in both explicit and implicit solvent were performed on a set of 75 native proteins to test the various energy potentials. A more stringent test for refinement was performed on 729 near-native decoys for each native protein. We use a powerfully convergent energy minimization method to show that implicit solvent (GBSA) provides greater improvement for some proteins than the KB potential: 24 of 75 proteins showing an average improvement of >20% in C(alpha) rmsd from the native structure with GBSA, compared to just 7 proteins with KB. Molecular dynamics in explicit solvent moved the structures further away from their native conformation than the initial, unrefined decoys. Implicit solvent gives rise to a deep, smooth potential energy attractor basin that pulls toward the native structure.
蛋白质结构预测中最具挑战性的问题之一是改进同源模型(与天然结构的Cα均方根偏差在1 - 3 Å范围内的结构),即蛋白质结构优化问题。研究表明,使用分子力学的真空能量最小化以及统计推导的连续可微的基于混合知识的(KB)势函数可以实现改进。然而,球状蛋白质在体内和体外的水溶液中折叠并发挥功能。在这项工作中,我们研究了溶剂在蛋白质结构优化中的作用。对一组75个天然蛋白质进行了显式溶剂中的分子动力学以及显式和隐式溶剂中的能量最小化,以测试各种能量势。对每个天然蛋白质的729个近天然诱饵进行了更严格的优化测试。我们使用一种强大的收敛能量最小化方法来表明,隐式溶剂(GBSA)对某些蛋白质的改进比KB势更大:75个蛋白质中有24个在使用GBSA时与天然结构相比Cα均方根偏差平均改进>20%,而使用KB时只有7个蛋白质。显式溶剂中的分子动力学使结构比初始的未优化诱饵更远离其天然构象。隐式溶剂产生一个深而平滑的势能吸引子盆地,将结构拉向天然结构。