Institut für Organische Chemie, Universität Regensburg, D-93040 Regensburg, Germany.
Org Biomol Chem. 2010 Aug 21;8(16):3704-14. doi: 10.1039/c004916f. Epub 2010 Jun 17.
The anion binding ability of bis-zinc cyclen complexes in buffered aqueous solution was investigated using indicator displacement assays (IDA) as well as luminescent labelled complexes. A high affinity to phosphate anions, such as UTP or pyrophosphate was observed in IDA while there was no observable binding of other anions. The binding affinity, and as a result the selectivity, between different phosphate anions correlates with their overall negative charge and steric demand. Complexes bearing luminescent labels did not respond to the presence of phosphate anions in homogeneous solution, but did if embedded as amphiphiles in small unilamellar vesicle (SUV) membranes. The scope of possible anionic analytes was extended to phosphorylated protein surfaces by using such metal complex-functionalized vesicles bearing oligoethylene glycol residues in an optimized amount on their surface to suppress non-specific interactions. Under physiological conditions these surface-modified vesicles show a selective response and nanomolar affinity for alpha-S1-Casein, which is multiple phosphorylated, while not responding to the corresponding dephosphorylated Casein or BSA. The vesicular luminescent metal complexes do not currently reach the sensitivity and selectivity of reported enzymatic assays or some chemosensors for phosphate anions, but they present a novel type of artificial receptor for molecular recognition. Membrane-embedding of multiple, different receptors and their possible structuring on the vesicular surface is expected to improve affinities and selectivities and may allow the design of artificial antibodies.
采用指示剂置换分析(IDA)和发光标记配合物研究了双锌环笼配合物在缓冲水溶液中的阴离子结合能力。IDA 观察到对磷酸盐阴离子(如 UTP 或焦磷酸盐)具有高亲和力,而对其他阴离子没有可观察到的结合。不同磷酸盐阴离子之间的结合亲和力(因此选择性)与它们的总负电荷和空间需求相关。带有发光标记的配合物在均相溶液中对磷酸盐阴离子的存在没有响应,但如果作为两亲物嵌入在小单层囊泡(SUV)膜中,则有响应。通过使用在其表面上具有优化量的聚乙二醇残基的这种金属配合物功能化囊泡来修饰蛋白质表面,将可能的阴离子分析物的范围扩展到磷酸化蛋白质表面,以抑制非特异性相互作用。在生理条件下,这些表面修饰的囊泡对α-S1-酪蛋白(其被多个磷酸化)表现出选择性响应和纳摩尔亲和力,而对相应的去磷酸化酪蛋白或 BSA 没有响应。囊泡发光金属配合物目前尚未达到报道的磷酸阴离子酶测定法或一些化学传感器的灵敏度和选择性,但它们为分子识别提供了一种新型人工受体。预期将多个不同的受体嵌入膜中,并可能在囊泡表面上对其进行结构化,以提高亲和力和选择性,并可能允许设计人工抗体。