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用于自组装混合量子点-DNA生物共轭物的反应性肽连接体。

A reactive peptidic linker for self-assembling hybrid quantum dot-DNA bioconjugates.

作者信息

Medintz Igor L, Berti Lorenzo, Pons Thomas, Grimes Amy F, English Douglas S, Alessandrini Andrea, Facci Paolo, Mattoussi Hedi

机构信息

U.S. Naval Research Laboratory, Center for Bio/Molecular Science and Engineering Code 6900, Division of Optical Sciences Code 5611, Washington, DC 20375, USA.

出版信息

Nano Lett. 2007 Jun;7(6):1741-8. doi: 10.1021/nl070782v. Epub 2007 May 26.

Abstract

Self-assembly of proteins, peptides, DNA, and other biomolecules to semiconductor quantum dots (QD) is an attractive bioconjugation route that can circumvent many of the problems associated with covalent chemistry and subsequent purification. Polyhistidine sequences have been shown to facilitate self-assembly of proteins and peptides to ZnS-overcoated CdSe QDs via complexation to unoccupied coordination metal sites on the nanocrystal surface. We describe the synthesis and characterization of a thiol-reactive hexahistidine peptidic linker that can be chemically attached to thiolated-DNA oligomers and mediate their self-assembly to CdSe-ZnS core-shell QDs. The self-assembly of hexahistidine-appended DNA to QDs is probed with gel electrophoresis and fluorescence resonance energy transfer techniques, and the results confirm high-affinity conjugate formation with control over the average molar ratio of DNA assembled per QD. To demonstrate the potential of this reactive peptide linker strategy, a prototype QD-DNA-dye molecular beacon is self-assembled and tested against both specific and nonspecific target DNAs. This conjugation route is potentially versatile, as altering the reactivity of the peptide linker may allow targeting of different functional groups such as amines and facilitate self-assembly of other nanoparticle-biomolecule structures.

摘要

蛋白质、肽、DNA及其他生物分子与半导体量子点(QD)的自组装是一种颇具吸引力的生物共轭途径,它可以规避许多与共价化学及后续纯化相关的问题。研究表明,多组氨酸序列可通过与纳米晶体表面未占据的配位金属位点络合,促进蛋白质和肽与硫化锌包覆的硒化镉量子点的自组装。我们描述了一种硫醇反应性六组氨酸肽连接体的合成与表征,该连接体可化学连接至硫醇化DNA寡聚物,并介导其与硒化镉-硫化锌核壳量子点的自组装。采用凝胶电泳和荧光共振能量转移技术探究了六组氨酸修饰的DNA与量子点的自组装情况,结果证实形成了高亲和力共轭物,且能控制每个量子点组装的DNA平均摩尔比。为证明这种反应性肽连接体策略的潜力,我们自组装了一个量子点-DNA-染料分子信标原型,并针对特异性和非特异性靶DNA进行了测试。这种共轭途径可能具有通用性,因为改变肽连接体的反应性可能允许靶向不同的官能团,如胺,并促进其他纳米颗粒-生物分子结构的自组装。

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