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一种基于肽的荧光比率型传感器,用于蛋白质的定量检测。

A peptide-based fluorescent ratiometric sensor for quantitative detection of proteins.

机构信息

Biosensor Group, CNRS/Université de Strasbourg, IREBS, 67412 Illkirch Cedex, France.

出版信息

Anal Biochem. 2010 Jun 15;401(2):188-95. doi: 10.1016/j.ab.2010.02.029. Epub 2010 Feb 25.

Abstract

A ratiometric fluorescent sensor was obtained by solid-phase synthesis of a peptide singly labeled at its N-terminus with a 3-hydroxychromone (3HC) derivative, an environmentally sensitive fluorophore with a two-band emission. The construct contains the binding site recognized by an antibody fragment, scFv1F4(Q34S), with nanomolar (nM) affinity. The dye only marginally affected the kinetic and equilibrium binding parameters of the scFv-peptide interaction, as measured by surface plasmon resonance. On interaction with the antibody fragment, the sensor showed up to 47% change in the ratio of its two emission bands, indicating an enhanced screening of the 3 HC fluorophore from bulk water. Competition with two unlabeled peptides of different lengths led to a dynamic displacement of the construct governed by the relative binding constants. Calibration showed that the response is proportional to the ratio of scFv1F4(Q34S) to labeled peptide. The detection limit of scFv1F4(Q34S) was 15 nM. In a more complex medium (100 microg/ml bovine serum albumin), the scFv could be detected in the 50- to 100-nM range. This work demonstrates that, with the perspective of further improvements of the dye spectroscopic properties, fluorescent ratiometric sensing based on small synthetic peptides represents a promising tool for quantitative target detection.

摘要

通过固相合成法,在肽的 N 末端单标记一个 3-羟基香豆素(3HC)衍生物,得到了一种比率荧光传感器,该衍生物是一种具有双发射带的环境敏感荧光团。该构建体包含与抗体片段 scFv1F4(Q34S) 识别的结合位点,其亲和力为纳摩尔(nM)。通过表面等离子体共振测量,染料仅对 scFv-肽相互作用的动力学和平衡结合参数产生微小影响。与抗体片段相互作用时,传感器的两个发射带的比率发生了高达 47%的变化,表明 3HC 荧光团从体相水中的屏蔽增强。与两个不同长度的未标记肽竞争导致了构建体的动态置换,这由相对结合常数决定。校准表明,响应与 scFv1F4(Q34S)与标记肽的比率成正比。scFv1F4(Q34S)的检测限为 15 nM。在更复杂的介质(100 μg/ml 牛血清白蛋白)中,可以在 50 到 100 nM 的范围内检测到 scFv。这项工作表明,在进一步改善染料光谱性质的前景下,基于小合成肽的荧光比率感应代表了一种用于定量靶检测的有前途的工具。

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