Borreguero Jose M, Dokholyan Nikolay V, Buldyrev Sergey V, Shakhnovich Eugene I, Stanley H Eugene
Center for Polymer Studies and Department of Physics, Boston University, Boston, MA 02215, USA.
J Mol Biol. 2002 May 3;318(3):863-76. doi: 10.1016/S0022-2836(02)00136-5.
We perform a detailed analysis of the thermodynamics and folding kinetics of the SH3 domain fold with discrete molecular dynamic simulations. We propose a protein model that reproduces some of the experimentally observed thermodynamic and folding kinetic properties of proteins. Specifically, we use our model to study the transition state ensemble of the SH3 fold family of proteins, a set of unstable conformations that fold to the protein native state with probability 1/2. We analyze the participation of each secondary structure element formed at the transition state ensemble. We also identify the folding nucleus of the SH3 fold and test extensively its importance for folding kinetics. We predict that a set of amino acid contacts between the RT-loop and the distal hairpin are the critical folding nucleus of the SH3 fold and propose a hypothesis that explains this result.
我们通过离散分子动力学模拟对SH3结构域折叠的热力学和折叠动力学进行了详细分析。我们提出了一个蛋白质模型,该模型再现了一些实验观察到的蛋白质热力学和折叠动力学性质。具体而言,我们使用我们的模型来研究SH3折叠家族蛋白质的过渡态系综,这是一组不稳定构象,它们以1/2的概率折叠成蛋白质天然状态。我们分析了在过渡态系综中形成的每个二级结构元件的参与情况。我们还确定了SH3折叠的折叠核心,并广泛测试了其对折叠动力学的重要性。我们预测RT环和远端发夹之间的一组氨基酸接触是SH3折叠的关键折叠核心,并提出了一个解释这一结果的假设。