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基于适配体的DNA纳米装置的蛋白质释放动力学。

Kinetics of protein-release by an aptamer-based DNA nanodevice.

作者信息

Reuter A, Dittmer W U, Simmel F C

机构信息

Department of Physics and Center for Nanoscience, LMU München, Geschwister-Scholl-Platz 1, 80539, Munich, Germany.

出版信息

Eur Phys J E Soft Matter. 2007 Jan;22(1):33-40. doi: 10.1140/epje/e2007-00004-3. Epub 2007 Feb 16.

Abstract

A recently introduced DNA nanodevice can be used to selectively bind or release the protein thrombin triggered by DNA effector strands. The release process is not well described by simple first or second order reaction kinetics. Here, fluorescence resonance energy transfer and fluorescence correlation spectroscopy experiments are used to explore the kinetics of the release process in detail. To this end the influence of concentration variations and also of temperature is determined. The relevant kinetic parameters are extracted from these experiments and the kinetic behavior of the system is simulated numerically using a set of rate equations. The hydrodynamic radii of the aptamer device alone and bound to thrombin are determined as well as the dissociation constant for the aptamer device-thrombin complex. The results from the experiments and a numerical simulation support the view that the DNA effector strand first binds to the aptamer device followed by the displacement of the protein.

摘要

一种最近推出的DNA纳米装置可用于选择性地结合或释放由DNA效应链触发的凝血酶蛋白。简单的一级或二级反应动力学并不能很好地描述释放过程。在这里,荧光共振能量转移和荧光相关光谱实验被用于详细探索释放过程的动力学。为此,确定了浓度变化以及温度的影响。从这些实验中提取相关的动力学参数,并使用一组速率方程对系统的动力学行为进行数值模拟。测定了单独的适体装置以及与凝血酶结合后的流体动力学半径,以及适体装置-凝血酶复合物的解离常数。实验结果和数值模拟支持了这样一种观点,即DNA效应链首先与适体装置结合,随后蛋白质被置换。

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