Pfaendtner Jim, Branduardi Davide, Parrinello Michele, Pollard Thomas D, Voth Gregory A
Center for Biophysical Modeling and Simulation and Department of Chemistry, University of Utah, Salt Lake City, UT 84112-0850, USA.
Proc Natl Acad Sci U S A. 2009 Aug 4;106(31):12723-8. doi: 10.1073/pnas.0902092106. Epub 2009 Jul 20.
The influence of the state of the bound nucleotide (ATP, ADP-Pi, or ADP) on the conformational free-energy landscape of actin is investigated. Nucleotide-dependent folding of the DNase-I binding (DB) loop in monomeric actin and the actin trimer is carried out using all-atom molecular dynamics (MD) calculations accelerated with a multiscale implementation of the metadynamics algorithm. Additionally, an investigation of the opening and closing of the actin nucleotide binding cleft is performed. Nucleotide-dependent free-energy profiles for all of these conformational changes are calculated within the framework of metadynamics. We find that in ADP-bound monomer, the folded and unfolded states of the DB loop have similar relative free-energy. This result helps explain the experimental difficulty in obtaining an ordered crystal structure for this region of monomeric actin. However, we find that in the ADP-bound actin trimer, the folded DB loop is stable and in a free-energy minimum. It is also demonstrated that the nucleotide binding cleft favors a closed conformation for the bound nucleotide in the ATP and ADP-Pi states, whereas the ADP state favors an open confirmation, both in the monomer and trimer. These results suggest a mechanism of allosteric interactions between the nucleotide binding cleft and the DB loop. This behavior is confirmed by an additional simulation that shows the folding free-energy as a function of the nucleotide cleft width, which demonstrates that the barrier for folding changes significantly depending on the value of the cleft width.
研究了结合核苷酸(ATP、ADP-Pi或ADP)的状态对肌动蛋白构象自由能景观的影响。使用通过元动力学算法的多尺度实现加速的全原子分子动力学(MD)计算,对单体肌动蛋白和肌动蛋白三聚体中DNase-I结合(DB)环的核苷酸依赖性折叠进行了研究。此外,还对肌动蛋白核苷酸结合裂隙的打开和关闭进行了研究。在元动力学框架内计算了所有这些构象变化的核苷酸依赖性自由能分布。我们发现,在结合ADP的单体中,DB环的折叠态和未折叠态具有相似的相对自由能。这一结果有助于解释在获得单体肌动蛋白该区域的有序晶体结构时遇到的实验困难。然而,我们发现,在结合ADP的肌动蛋白三聚体中,折叠的DB环是稳定的,处于自由能最小值。还证明了核苷酸结合裂隙对于ATP和ADP-Pi状态下结合的核苷酸倾向于闭合构象,而ADP状态在单体和三聚体中都倾向于开放构象。这些结果提示了核苷酸结合裂隙与DB环之间的变构相互作用机制。通过另一个模拟证实了这种行为,该模拟显示了折叠自由能作为核苷酸裂隙宽度的函数,这表明折叠的障碍根据裂隙宽度的值有显著变化。