Supramolecular Machines and ARchitectures Team, Institut des Biomolécules Max Mousseron, (IBMM) UMR 5247 CNRS-UM1-UM2, Université Montpellier 2, Place Eugène Bataillon, Case Courrier 1706, F-34095 Montpellier Cedex 5, France.
Molecules. 2013 Sep 17;18(9):11553-75. doi: 10.3390/molecules180911553.
The synthesis of a peptide-containing lasso molecular switch by a self-entanglement strategy is described. The interlocked rotaxane molecular machine consists of a benzometaphenylene[25]crown-8 (BMP25C8) macrocycle surrounding a molecular axle. This molecular axle contains a tripeptidic sequence and two molecular stations: a N-benzyltriazolium and a pH-sensitive anilinium station. The tripeptide is located between the macrocycle and the triazolium station, so that its conformation can be tailored depending on the shuttling of the macrocycle from one station to the other. At acidic pH, the macrocycle resides around the anilinium moiety, whereas it shuttles around the triazolium station after deprotonation. This molecular machinery thus forces the lasso to adopt a tightened or a loosened conformation.
描述了一种通过自缠结策略合成含肽套索分子开关的方法。互锁轮烷分子机器由一个苯并[25]冠-8(BMP25C8)大环围绕一个分子轴组成。该分子轴包含一个三肽序列和两个分子站:一个 N-苄基三唑鎓和一个 pH 敏感的苯胺基站。三肽位于大环和三唑鎓站之间,因此其构象可以根据大环从一个站到另一个站的穿梭进行调整。在酸性 pH 下,大环位于苯胺部分周围,而在去质子化后,大环在三唑鎓站周围穿梭。这种分子机械迫使套索采用收紧或放松的构象。