Department of Chemistry, Purdue University, 560 Oval Drive, West Lafayette, Indiana 47907-2084, United States.
ACS Biomater Sci Eng. 2022 May 9;8(5):1860-1866. doi: 10.1021/acsbiomaterials.2c00155. Epub 2022 Apr 4.
The use of biomaterials for the inclusion and stabilization of biopolymers is an ongoing challenge. Herein, we disclose three-dimensional (3D) coiled-coil peptide crystals with metal ions that include and overgrow His-tagged fluorescent proteins within the crystal. The protein guests are found within two symmetry-related growth sectors of the crystalline host that are associated with faces of the growing crystal that display ligands for metal ions. The fluorescent proteins are included within this "hourglass" region of the crystals at a notably high level, display order within the crystal hosts, and demonstrate sufficiently tight packing to enable energy transfer between a donor-acceptor pair. His-tagged fluorescent proteins display remarkable thermal stability to denaturation over extended periods of time (days) at high temperatures when within the crystals. Ultimately, this strategy may prove useful for the prolonged storage of thermally sensitive biopolymer guests within a 3D crystalline matrix.
生物材料的使用包括和稳定生物聚合物是一个持续的挑战。在此,我们公开了三维(3D)螺旋肽晶体与金属离子,包括和生长 His 标记的荧光蛋白在晶体。该蛋白的客人是在两个相关的晶体的对称生长领域内,这与显示金属离子配体的晶面有关。荧光蛋白是包含在晶体的“沙漏”区域的水平相当高,显示在晶体主体内的秩序,并表现出足够的紧包装,以实现供体-受体对之间的能量转移。His 标记的荧光蛋白在晶体中显示出显著的热稳定性,在高温下长时间(数天)变性。最终,该策略可能对在三维晶体基质中延长储存对热敏感的生物聚合物客体有用。