Aromatically Functionalized Cyclic Tricholate Macrocycles: Aggregation, Transmembrane Pore Formation, Flexibility, and Cooperativity
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  • 作者:Lakmini Widanapathirana ; Yan Zhao
  • 刊名:The Journal of Organic Chemistry
  • 出版年:2012
  • 出版时间:May 18, 2012
  • 年:2012
  • 卷:77
  • 期:10
  • 页码:4679-4687
  • 全文大小:510K
  • 年卷期:v.77,no.10(May 18, 2012)
  • ISSN:1520-6904
文摘
The aggregation of macrocyclic oligocholates with introverted hydrophilic groups and aromatic side chains was studied by fluorescence spectroscopy and liposome leakage assays. Comparison between the solution and the membrane phase afforded insight into the solvophobically driven aggregation. The macrocycles stacked over one another in lipid membranes to form transmembrane nanopores, driven by a strong tendency of the water molecules in the interior of the amphiphilic macrocycles to aggregate in a nonpolar environment. The aromatic side chains provided spectroscopic signatures for stacking, as well as additional driving force for the aggregation. Smaller, more rigid macrocycles stacked better than larger, more flexible ones because the cholate building blocks in the latter could rotate outward and diminish the conformation needed for the water-templated hydrophobic stacking. The acceptor鈥揳cceptor interactions among naphthalenediimide (NDI) groups were more effective than the pyrene鈥揘DI donor鈥揳cceptor interactions in promoting the transmembrane pore formation of the oligocholate macrocycles.

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