Wasternack Janos, Schröder Hendrik V, Witte J Felix, Ilisson Mihkel, Hupatz Henrik, Hille Julian F, Gaedke Marius, Valkonen Arto M, Sobottka Sebastian, Krappe Alexander, Schubert Mario, Paulus Beate, Rissanen Kari, Sarkar Biprajit, Eigler Siegfried, Resch-Genger Ute, Schalley Christoph A
Institut für Chemie und Biochemie, Freie Universität Berlin, Arnimallee 20, 14195, Berlin, Germany.
Institut für Chemie und Biochemie, Freie Universität Berlin, Arnimallee 22, 14195, Berlin, Germany.
Commun Chem. 2024 Oct 4;7(1):229. doi: 10.1038/s42004-024-01312-1.
In nature, molecular environments in proteins can sterically protect and stabilize reactive species such as organic radicals through non-covalent interactions. Here, we report a near-infrared fluorescent rotaxane in which the stabilization of a chemically labile squaraine fluorophore by the coordination of a tetralactam macrocycle can be controlled chemically and electrochemically. The rotaxane can be switched between two co-conformations in which the wheel either stabilizes or exposes the fluorophore. Coordination by the wheel affects the squaraine's stability across four redox states and renders the radical anion significantly more stable-by a factor of 6.7-than without protection by a mechanically bonded wheel. Furthermore, the fluorescence properties can be tuned by the redox reactions in a stepwise manner. Mechanically interlocked molecules provide an excellent scaffold to stabilize and selectively expose reactive species in a co-conformational switching process controlled by external stimuli.
在自然界中,蛋白质中的分子环境可通过非共价相互作用在空间上保护和稳定诸如有机自由基等活性物种。在此,我们报道了一种近红外荧光轮烷,其中通过四内酰胺大环的配位作用对化学不稳定的方酸菁荧光团的稳定作用可通过化学和电化学方法进行控制。该轮烷可在两种共构象之间切换,在这两种构象中,轮要么稳定荧光团,要么使荧光团暴露。轮的配位作用影响方酸菁在四种氧化还原状态下的稳定性,并且使自由基阴离子比没有机械键合轮的保护时显著更稳定——稳定系数为6.7倍。此外,荧光性质可通过氧化还原反应逐步调节。机械互锁分子提供了一个出色的支架,以在由外部刺激控制的共构象切换过程中稳定并选择性地暴露活性物种。