Departament de Química, Universitat Autònoma de Barcelona, 08193 Bellaterra, Spain.
Chemistry. 2011 Apr 11;17(16):4588-97. doi: 10.1002/chem.201002193. Epub 2011 Mar 14.
Two chiral synthetic β-dipeptides have been constructed, one with two trans-cyclobutane residues and the other with one trans and one cis fragment, 1 and 2, respectively, and investigated to get insight into the non-covalent interactions responsible for their self-assembly to form ordered aggregates, as well into parameters such as their morphology and size. Experimental evidence of the formation of these assemblies was provided by spectroscopy, microscopy and X-ray diffraction experiments that suggest the formation of nanoscale helical aggregates. This process involves a conformational change in the molecules of each dipeptide with respect to the preferred conformation of the isolated molecules in solution. A high-resolution NMR spectroscopy study allowed the determination of the dynamics of the gelation process in [D(8)]toluene and the sol-gel transition temperature, which was around 270 K in this solvent at a concentration of 15 mM. NMR spectroscopy experiments also provided some information about conformational changes involved in the sol-gel transition and also suggested a different gel packing for each dipeptide. These observations have been nicely explained by computational studies. The self-assembly of the molecules has been modelled and suggested a head-to-head molecular arrangement for 1 and a head-to-tail arrangement for 2 to give helical structures corresponding to hydrogen-bonded single chains. These chains interact with one another in an antiparallel way to afford bundles, the significant geometry parameters of which fit well to the main peaks observed in wide-angle X-ray diffraction spectra of the aggregates in the solid state.
已经构建了两个手性合成的β-二肽,一个具有两个反式环丁烷残基,另一个具有一个反式和一个顺式片段,分别为 1 和 2,并对其进行了研究,以深入了解负责其自组装形成有序聚集体的非共价相互作用,以及形态和尺寸等参数。通过光谱、显微镜和 X 射线衍射实验提供了这些组装体形成的实验证据,这些实验表明形成了纳米级螺旋聚集体。这个过程涉及到每个二肽分子相对于在溶液中孤立分子的优先构象的构象变化。高分辨率 NMR 光谱研究允许确定[D(8)]甲苯中的凝胶化过程的动力学和溶胶-凝胶转变温度,在该溶剂中,浓度为 15 mM 时,转变温度约为 270 K。NMR 光谱实验还提供了一些关于溶胶-凝胶转变中涉及的构象变化的信息,并暗示了每种二肽的不同凝胶堆积。这些观察结果通过计算研究得到了很好的解释。分子的自组装已被建模,并提出了 1 的头对头分子排列和 2 的头对尾排列,以形成对应于氢键单链的螺旋结构。这些链以反平行的方式相互作用,形成束,其重要的几何参数与在固态下聚集体的广角 X 射线衍射光谱中观察到的主要峰很好地吻合。