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一种基于肽的比率生物传感器构建体,用于直接荧光检测蛋白质分析物。

A peptide-based, ratiometric biosensor construct for direct fluorescence detection of a protein analyte.

作者信息

Enander Karin, Choulier Laurence, Olsson A Linnéa, Yushchenko Dmytro A, Kanmert Daniel, Klymchenko Andrey S, Demchenko Alexander P, Mély Yves, Altschuh Danièle

机构信息

Division of Molecular Physics, Department of Physics, Chemistry and Biology, Linkoping University, 58183 Linkoping, Sweden.

出版信息

Bioconjug Chem. 2008 Sep;19(9):1864-70. doi: 10.1021/bc800159d. Epub 2008 Aug 12.

Abstract

We present the design, synthesis, and functional evaluation of peptide-based fluorescent constructs for wavelength-ratiometric biosensing of a protein analyte. The concept was shown using the high-affinity model interaction between the 18 amino acid peptide pTMVP and a recombinant antibody fragment, Fab57P. pTMVP was functionalized in two different positions with 6-bromomethyl-2-(2-furanyl)-3-hydroxychromone, an environmentally sensitive fluorophore with a two-band emission. The equilibrium dissociation constant of the interaction between pTMVP and Fab57P was largely preserved upon labeling. The biosensor ability of the labeled peptide constructs was evaluated in terms of the relative intensity change of the emission bands from the normal (N*) and tautomer (T*) excited-state species of the fluorophore ( I(N*)/I(T*)) upon binding of Fab57P. When the peptide was labeled in the C terminus, the I(N*)/I(T*) ratio changed by 40% upon analyte binding, while labeling close to the residues most important for binding resulted in a construct that completely lacked ratiometric biosensor ability. Integrated biosensor elements for reagentless detection, where peptides and ratiometric fluorophores are combined to ensure robustness in both recognition and signaling, are expected to become an important contribution to the design of future protein quantification assays in immobilized formats.

摘要

我们展示了用于蛋白质分析物波长比率生物传感的基于肽的荧光构建体的设计、合成及功能评估。利用18个氨基酸的肽pTMVP与重组抗体片段Fab57P之间的高亲和力模型相互作用展示了这一概念。pTMVP在两个不同位置用6-溴甲基-2-(2-呋喃基)-3-羟基色酮进行了功能化,该化合物是一种具有双波段发射的环境敏感荧光团。标记后,pTMVP与Fab57P之间相互作用的平衡解离常数基本保持不变。根据荧光团正常(N*)和互变异构体(T*)激发态物种发射带的相对强度变化(I(N*)/I(T*)),评估标记肽构建体的生物传感器能力,该变化发生在Fab57P结合时。当肽在C端标记时,分析物结合后I(N*)/I(T*)比率变化了40%,而在靠近结合最重要残基处进行标记得到的构建体则完全缺乏比率生物传感器能力。将肽和比率荧光团结合以确保识别和信号传导的稳健性的无试剂检测集成生物传感器元件,有望为未来固定化形式的蛋白质定量分析设计做出重要贡献。

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