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基于荧光衍生化的α,γ-环八肽的高效定向同型和异型二聚体能量转移材料。

Highly efficient and directional homo- and heterodimeric energy transfer materials based on fluorescently derivatized α,γ-cyclic octapeptides.

机构信息

Departamento de Química Orgánica y Unidad Asociada al C.S.I.C. Centro Singular de Investigación en Química Biológica y Materiales Moleculares, Campus Vida, Universidad de Santiago, 15782 Santiago de Compostela, Spain.

出版信息

Chem Asian J. 2011 Jan 3;6(1):110-21. doi: 10.1002/asia.201000545.

Abstract

Cyclic octapeptides composed of α-amino acids alternated with cis-3-aminocycloalkanecarboxylic acids, self-assemble as drumlike dimers through β-sheet-like, backbone-to-backbone hydrogen bonding. Heterodimerization appears to be significantly more favored than homodimerization, and this represents a novel approach for the design and fabrication of highly stable heterodimeric assemblies. A multicomponent equilibrium network based on fluorescently derivatized self-assembling α,γ-cyclic octapeptides has been successfully used to form light-harvesting/light-converting ensembles with a distinctive organization of donor and acceptor units able to act as efficient artificial photosystems.

摘要

由α-氨基酸与顺式-3-氨基环烷羧酸交替组成的环状八肽通过类似β-折叠、主链到主链氢键自组装成鼓状二聚体。杂二聚体的形成似乎明显优于同二聚体,这代表了设计和制造高度稳定的杂二聚体组装体的一种新方法。基于荧光衍生的自组装α,γ-环状八肽的多组分平衡网络已成功用于形成具有独特供体和受体单元组织的光捕获/光转换聚集体,这些单元能够作为有效的人工光合作用系统发挥作用。

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