School of Chemistry and Environmental Engineering, Hanshan Normal University, Chaozhou 521041, P.R. China.
Department of Chemistry, University of North Texas, Denton, Texas 76203, United States.
J Am Chem Soc. 2022 Jun 8;144(22):9559-9563. doi: 10.1021/jacs.2c03326. Epub 2022 May 23.
Bioinspired metal-organic frameworks (MOFs) serve as suitable crystalline models for recognition and sensing of biomolecules mimicking natural processes, providing new ideas and concepts for cutting-edge biomedical applications. Here, we have successfully prepared a robust biological metal-organic framework with periodic docking grooves resembling the major and minor grooves in the DNA double helix structure, which can be used as unique recognition sites for selectively identifying l-/d-tryptophan (l-/d-Trp). Notably, successful encapsulation of Trp could be observed by single-crystal X-ray diffraction for the first time. Trp has matched size and shape to fit snugly into the major groove. Combined with isothermal titration calorimetry, it was found that ZnBTCHx could spontaneously capture l-/d-Trp through two different thermodynamic pathways: enthalpy-driven for encapsulating l-Trp and entropy-driven for uptaking d-Trp. Furthermore, molecular dynamics and density functional theory verified the role of hydrogen bonding and π-π/C-H···π interactions in the host-guest interface. This work provides unique insight for the construction of bionic models to mimic the natural binding properties, which is of great significance for the fields of pharmaceutical chemistry and biomedical science.
仿生金属-有机骨架 (MOFs) 可作为仿生识别和传感生物分子的合适晶体模型,为前沿生物医学应用提供了新的思路和概念。在这里,我们成功制备了一种具有周期性对接凹槽的坚固生物金属-有机骨架,其结构类似于 DNA 双螺旋结构中的大沟和小沟,可作为独特的识别位点,用于选择性识别 l-/d-色氨酸 (l-/d-Trp)。值得注意的是,首次通过单晶 X 射线衍射观察到 Trp 的成功包合物。Trp 的大小和形状与大沟相匹配,可紧密嵌入其中。结合等温热力学滴定,发现 ZnBTCHx 可以通过两种不同的热力学途径自发捕获 l-/d-Trp:包埋 l-Trp 是焓驱动的,而摄取 d-Trp 是熵驱动的。此外,分子动力学和密度泛函理论验证了氢键和 π-π/C-H···π 相互作用在主客体界面中的作用。这项工作为构建仿生模型以模拟天然结合特性提供了独特的见解,对药物化学和生物医学科学领域具有重要意义。