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DABCO 配位诱导的旋转自组装双卟啉和四卟啉 α,γ-环八肽二聚体的区域异构体控制。

Regioisomeric control induced by DABCO coordination to rotatable self-assembled bis- and tetraporphyrin α,γ-cyclic octapeptide dimers.

机构信息

Institute of Chemical Research of Catalonia (ICIQ), Av. Països Catalans 16, 43007 Tarragona, Spain.

出版信息

Chemistry. 2011 Jan 24;17(4):1220-9. doi: 10.1002/chem.201002271. Epub 2010 Dec 1.

Abstract

The design and synthesis of two α,γ-cyclic octapeptides decorated with one and two Zn-porphyrin units in their periphery is described. In nonpolar organic solvents the α,γ-cyclic octapeptides quantitatively self-assemble into Zn-bis- or -tetraporphyrin architectures that could act as molecular tweezers. The self-assembly process, however, is not regioselective and affords a mixture of different regioisomers that are involved in chemical exchange processes. The regioisomers with the Zn-porphyrin units positioned in register with respect to each other are proposed to be the less abundant species in the solution mixture. It has been demonstrated that the coordination of 1,4-diazabicyclo[2.2.2]octane (DABCO) to the supramolecular bis- or tetraporphyrin tweezers is an effective way to achieve regioisomeric control of the self-assembled mixture of dimers. Thus, DABCO functions as an external molecular trigger and, when used under strict stoichiometric control with respect to the Zn-porphyrin units, provokes the exclusive formation of self-assembled dimers with a cofacial arrangement of Zn-porphyrin units through the formation of sandwich-type complexes. The use of excess DABCO fragments the sandwich complexes and affords open dimers of high stoichiometry with DABCO molecules axially monocoordinated to the Zn-porphyrin units, probably as a regioisomeric mixture. In the case of Zn-tetraporphyrin tweezers, the ditopic coordination of DABCO at the two binding sites shows a moderate positive cooperativity factor, αP=5. These assemblies have potential applications as light-induced energy and electron-transfer switches regulated by DABCO coordination; such applications would require the introduction of additional chromophores in the cyclic peptide scaffold.

摘要

描述了两种α,γ-环八肽的设计和合成,它们的外围分别带有一个和两个锌卟啉单元。在非极性有机溶剂中,α,γ-环八肽定量地自组装成 Zn-双或四卟啉结构,这些结构可以作为分子夹。然而,自组装过程不是区域选择性的,并且得到了涉及化学交换过程的不同区域异构体的混合物。与彼此对位的 Zn-卟啉单元定位的区域异构体被提出是溶液混合物中较少丰度的物质。已经证明,1,4-二氮杂二环[2.2.2]辛烷(DABCO)与超分子双或四卟啉夹的配位是实现二聚体自组装混合物的区域异构体控制的有效方法。因此,DABCO 是一种有效的外部分子触发剂,并且当在严格的与 Zn-卟啉单元的化学计量控制下使用时,通过形成三明治型配合物,引发 Zn-卟啉单元共面排列的自组装二聚体的独家形成。使用过量的 DABCO 会使三明治配合物断裂,并提供具有轴向单配位到 Zn-卟啉单元的 DABCO 分子的高计量比的开放二聚体,可能是作为区域异构体混合物。在 Zn-四卟啉夹的情况下,DABCO 在两个结合位点的双位点配位表现出适度的正协同作用因子αP=5。这些组装物具有作为受 DABCO 配位调节的光诱导能量和电子转移开关的潜在应用;此类应用将需要在环状肽支架中引入额外的生色团。

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