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首页> 外文期刊>Methods: A Companion to Methods in Enzymology >Studying small molecule-aptamer interactions using MicroScale Thermophoresis (MST)
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Studying small molecule-aptamer interactions using MicroScale Thermophoresis (MST)

机译:使用MicroScale Thermophoresis(MST)研究小分子与适体的相互作用

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摘要

Aptamers are potent and versatile binding molecules recognizing various classes of target molecules. Even challenging targets such as small molecules can be identified and bound by aptamers. Studying the interaction between aptamers and drugs, antibiotics or metabolites in detail is however difficult due to the lack of sophisticated analysis methods. Basic binding parameters of these small molecule-aptamer interactions such as binding affinity, stoichiometry and thermodynamics are elaborately to access using the state of the art technologies. The innovative MicroScale Thermophoresis (MST) is a novel, rapid and precise method to characterize these small molecule-aptamer interactions in solution at microliter scale. The technology is based on the movement of molecules through temperature gradients, a physical effect referred to as thermophoresis. The thermophoretic movement of a molecule depends - besides on its size - on charge and hydration shell. Upon the interaction of a small molecule and an aptamer, at least one of these parameters is altered, leading to a change in the movement behavior, which can be used to quantify molecular interactions independent of the size of the target molecule. The MST offers free choice of buffers, even measurements in complex bioliquids are possible. The dynamic affinity range covers the pM to mM range and is therefore perfectly suited to analyze small molecule-aptamer interactions. This section describes a protocol how quantitative binding parameters for aptamer-small molecule interactions can be obtained by MST. This is demonstrated by mapping down the binding site of the well-known ATP aptamer DH25.42 to a specific region at the adenine of the ATP molecule. (C) 2015 Elsevier Inc. All rights reserved.
机译:适体是识别各种类型的靶分子的有效且通用的结合分子。即使是具有挑战性的目标,例如小分子,也可以被适体识别并结合。然而,由于缺少复杂的分析方法,因此难以详细研究适体与药物,抗生素或代谢物之间的相互作用。这些小分子-适体相互作用的基本结合参数,例如结合亲和力,化学计量和热力学,是使用现有技术水平精心制作的。创新的MicroScale Thermophoresis(MST)是一种新颖,快速,精确的方法,用于以微升规模表征溶液中的​​这些小分子-适体相互作用。该技术基于分子通过温度梯度的运动,这种物理效应被称为热泳。分子的热泳运动不仅取决于分子的大小,还取决于电荷和水合壳。当小分子与适体相互作用时,这些参数中的至少一个会发生变化,从而导致运动行为发生变化,该行为可用于量化与目标分子大小无关的分子相互作用。 MST可以自由选择缓冲液,甚至可以在复杂的生物液体中进行测量。动态亲和力范围涵盖了pM到mM范围,因此非常适合分析小分子与适体的相互作用。本节介绍了如何通过MST获得适体-小分子相互作用的定量结合参数的协议。通过向下映射众所周知的ATP适体DH25.42的结合位点到ATP分子腺嘌呤的特定区域,可以证明这一点。 (C)2015 Elsevier Inc.保留所有权利。

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