Department of Chemistry, University of Liverpool, Liverpool, L69 7ZD, UK.
Science. 2010 Aug 27;329(5995):1053-7. doi: 10.1126/science.1190672.
Porous materials find widespread application in storage, separation, and catalytic technologies. We report a crystalline porous solid with adaptable porosity, in which a simple dipeptide linker is arranged in a regular array by coordination to metal centers. Experiments reinforced by molecular dynamics simulations showed that low-energy torsions and displacements of the peptides enabled the available pore volume to evolve smoothly from zero as the guest loading increased. The observed cooperative feedback in sorption isotherms resembled the response of proteins undergoing conformational selection, suggesting an energy landscape similar to that required for protein folding. The flexible peptide linker was shown to play the pivotal role in changing the pore conformation.
多孔材料在存储、分离和催化技术中有着广泛的应用。我们报道了一种具有可调节孔隙率的结晶多孔固体,其中简单的二肽连接物通过与金属中心配位排列成规则的阵列。实验结果通过分子动力学模拟得到了证实,实验表明低能量的肽扭转和位移使得可用的孔体积能够随着客体负载的增加而平稳地从 0 增加。吸附等温线中观察到的协同反馈类似于经历构象选择的蛋白质的响应,这表明了与蛋白质折叠所需的能量景观相似。柔性肽连接物被证明在改变孔构象方面起着关键作用。