Department of Chemistry, Graduate School of Science, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo, 113-0033, Japan.
Nat Commun. 2023 Aug 10;14(1):4490. doi: 10.1038/s41467-023-40091-6.
Structurally flexible porous crystals that combine high regularity and stimuli responsiveness have received attracted attention in connection with natural allostery found in regulatory systems of activity and function in biological systems. Porous crystals with molecular recognition sites in the inner pores are particularly promising for achieving elaborate functional control, where the local binding of effectors triggers their distortion to propagate throughout the structure. Here we report that the structure of a porous molecular crystal can be allosterically controlled by local adsorption of effectors within low-symmetry nanochannels with multiple molecular recognition sites. The exchange of effectors at the allosteric site triggers diverse conversion of the framework structure in an effector-dependent manner. In conjunction with the structural conversion, it is also possible to switch the molecular affinity at different recognition sites. These results may provide a guideline for the development of supramolecular materials with flexible and highly-ordered three-dimensional structures for biological applications.
具有高度规则性和刺激响应性的结构柔性多孔晶体在与生物系统中活性和功能调节系统中发现的天然变构作用有关的方面引起了关注。在内孔中具有分子识别位点的多孔晶体在实现精细功能控制方面特别有前途,其中局部结合效应物会引发它们的变形,从而在整个结构中传播。在这里,我们报告说,通过在具有多个分子识别位点的低对称纳通道内局部吸附效应物,可以对多孔分子晶体的结构进行变构控制。变构部位的效应物交换以依赖于效应物的方式触发框架结构的多种转化。结合结构转换,也可以切换不同识别位点的分子亲和力。这些结果可能为开发用于生物应用的具有灵活和高度有序的三维结构的超分子材料提供指导。