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利用微量热泳动技术绘制适体在ATP上的结合位点

Mapping the Binding Site of an Aptamer on ATP Using MicroScale Thermophoresis.

作者信息

Entzian Clemens, Schubert Thomas

机构信息

2bind GmbH.

2bind GmbH;

出版信息

J Vis Exp. 2017 Jan 7(119):55070. doi: 10.3791/55070.

Abstract

Characterization of molecular interactions in terms of basic binding parameters such as binding affinity, stoichiometry, and thermodynamics is an essential step in basic and applied science. MicroScale Thermophoresis (MST) is a sensitive biophysical method to obtain this important information. Relying on a physical effect called thermophoresis, which describes the movement of molecules through temperature gradients, this technology allows for the fast and precise determination of binding parameters in solution and allows the free choice of buffer conditions (from buffer to lysates/sera). MST uses the fact that an unbound molecule displays a different thermophoretic movement than a molecule that is in complex with a binding partner. The thermophoretic movement is altered in the moment of molecular interaction due to changes in size, charge, and hydration shell. By comparing the movement profiles of different molecular ratios of the two binding partners, quantitative information such as binding affinity (pM to mM) can be determined. Even challenging interactions between molecules of small sizes, such as aptamers and small compounds, can be studied by MST. Using the well-studied model interaction between the DH25.42 DNA aptamer and ATP, this manuscript provides a protocol to characterize aptamer-small molecule interactions. This study demonstrates that MST is highly sensitive and permits the mapping of the binding site of the 7.9 kDa DNA aptamer to the adenine of ATP.

摘要

根据诸如结合亲和力、化学计量学和热力学等基本结合参数来表征分子间相互作用,是基础科学和应用科学中的关键步骤。微量热泳法(MST)是获取此类重要信息的一种灵敏的生物物理方法。该技术基于一种称为热泳的物理效应,即分子在温度梯度中的移动,能够快速精确地测定溶液中的结合参数,并可自由选择缓冲条件(从缓冲液到裂解物/血清)。MST利用了未结合分子与与结合伴侣形成复合物的分子表现出不同热泳运动这一事实。由于大小、电荷和水化层的变化,分子相互作用瞬间热泳运动会发生改变。通过比较两个结合伴侣不同分子比例的运动图谱,可确定诸如结合亲和力(从皮摩尔到毫摩尔)等定量信息。即使是小分子之间具有挑战性的相互作用,如适体与小分子化合物之间的相互作用,也可用MST进行研究。利用已充分研究的DH25.42 DNA适体与ATP之间的模型相互作用,本文提供了一种表征适体 - 小分子相互作用的方案。本研究表明,MST高度灵敏,能够将7.9 kDa DNA适体的结合位点定位到ATP的腺嘌呤上。

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β-Conglutin dual aptamers binding distinct aptatopes.β-伴大豆球蛋白双适体结合不同的适体表位。
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