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通过含有分子适配体的成孔蛋白对有机分析物进行随机传感。

Stochastic sensing of organic analytes by a pore-forming protein containing a molecular adapter.

作者信息

Gu L Q, Braha O, Conlan S, Cheley S, Bayley H

机构信息

Department of Medical Biochemistry & Genetics, Texas A&M University Health Science Center, College Station 77843-1114, USA.

出版信息

Nature. 1999 Apr 22;398(6729):686-90. doi: 10.1038/19491.

Abstract

The detection of organic molecules is important in many areas, including medicine, environmental monitoring and defence. Stochastic sensing is an approach that relies on the observation of individual binding events between analyte molecules and a single receptor. Engineered transmembrane protein pores are promising sensor elements for stochastic detection, and in their simplest manifestation they produce a fluctuating binary ('on/off') response in the transmembrane electrical current. The frequency of occurrence of the fluctuations reveals the concentration of the analyte, and its identity can be deduced from the characteristic magnitude and/or duration of the fluctuations. Genetically engineered versions of the bacterial pore-forming protein alpha-haemolysin have been used to identify and quantify divalent metal ions in solution. But it is not immediately obvious how versatile binding sites for organic ligands might be obtained by engineering of the pore structure. Here we show that stochastic sensing of organic molecules can be procured from alpha-haemolysin by equipping the channel with an internal, non-covalently bound molecular 'adapter' which mediates channel blocking by the analyte. We use cyclodextrins as the adapters because these fit comfortably inside the pore and present a hydrophobic cavity suitable for binding a variety of organic analytes. Moreover, a single sensing element of this sort can be used to analyse a mixture of organic molecules with different binding characteristics. We envisage the use of other adapters, so that the pore could be 'programmed' for a range of sensing functions.

摘要

有机分子的检测在许多领域都很重要,包括医学、环境监测和国防。随机传感是一种依靠观察分析物分子与单个受体之间的单个结合事件的方法。工程化跨膜蛋白孔是用于随机检测的很有前景的传感元件,在其最简单的表现形式中,它们会在跨膜电流中产生波动的二元(“开/关”)响应。波动出现的频率揭示了分析物的浓度,其身份可以从波动的特征幅度和/或持续时间推断出来。细菌成孔蛋白α-溶血素的基因工程版本已被用于识别和定量溶液中的二价金属离子。但通过工程化孔结构如何获得用于有机配体的通用结合位点,这一点并不直观。在这里,我们表明,通过为通道配备内部非共价结合的分子“适配器”,该适配器介导分析物对通道的阻断,可以从α-溶血素实现对有机分子的随机传感。我们使用环糊精作为适配器,因为它们能舒适地适配在孔内,并提供一个适合结合各种有机分析物的疏水腔。此外,这种单一传感元件可用于分析具有不同结合特性的有机分子混合物。我们设想使用其他适配器,这样孔就可以针对一系列传感功能进行“编程”。

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