Behanna Heather A, Rajangam Kanya, Stupp Samuel I
Department of Chemistry, Department of Materials Science and Engineering, Feinberg School of Medicine, Northwestern University, Evanston, Illinois 60208-3108, USA.
J Am Chem Soc. 2007 Jan 17;129(2):321-7. doi: 10.1021/ja062415b.
This paper describes the fluorescence of bimolecular coassemblies that form one-dimensional nanostructures. One molecule is a fluorescent peptide amphiphile containing its branched stilbene chromophore covalently linked to the hydrophilic end of the amphiphile, and the second molecule is a shorter, nonfluorescent peptide amphiphile of complementary charge. Using circular dichroism we observe that mixing both molecules results in coassemblies that exhibit a beta-sheet signature in the peptide region indicative of these types of nanostructures. The nature of the coassembly is dependent on the molar ratio of each component, and the changing CD spectra suggest the formation of domains along the length of the nanofibers with decreasing concentrations of the fluorescent component. In coassemblies with dilute concentrations of the fluorophore, we observe an increase in fluorescence intensity and quantum yield, as well as chiral transfer to the achiral segment of the fluorescent peptide amphiphile. The coassemblies studied containing a fluorescent component at a low molar ratio exhibit fluorescence resonance energy transfer to fluorescent acceptors in solution. When the nonfluorescent peptide amphiphile component is designed to bind the important bioactive polysaccharide heparin, a selective transfer of energy is observed between fluorescein-tagged heparin and the coassemblies in both dilute solution and in macroscopic gels.
本文描述了形成一维纳米结构的双分子共组装体的荧光特性。一种分子是荧光肽两亲物,其支链二苯乙烯发色团与两亲物的亲水端共价连接,另一种分子是电荷互补的较短的非荧光肽两亲物。利用圆二色性,我们观察到将这两种分子混合会形成共组装体,该共组装体在肽区域呈现出β-折叠特征,表明存在这类纳米结构。共组装体的性质取决于各组分的摩尔比,圆二色光谱的变化表明随着荧光组分浓度降低,沿纳米纤维长度方向会形成不同区域。在荧光团浓度较低的共组装体中,我们观察到荧光强度和量子产率增加,以及手性转移至荧光肽两亲物的非手性片段。所研究的低摩尔比含荧光组分的共组装体在溶液中表现出向荧光受体的荧光共振能量转移。当非荧光肽两亲物组分设计用于结合重要的生物活性多糖肝素时,在稀溶液和宏观凝胶中均观察到荧光素标记的肝素与共组装体之间的选择性能量转移。