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Biosensor platform for transcription factor DNA binding activity detection

机译:转录因子DNA结合活性检测的生物传感器平台

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The general objective of this project is to develop an acoustic biosensor platform to study protein-DNA binding and its application to the study of DNA transcription factors. An impedance analysis methodology enables the calculation of the acoustic energy dissipation per unit mass observed upon DNA binding, providing quantitative information on the size and shape of the tethered molecules. The rationale of the project rely on the fact that the conformational changes and bending of DNA upon protein binding increase the rigidity of DNA films immobilized at the surface of an acoustic sensor. As a result less acoustic energy is dissipated what is signaled by a decrease of the variation of the acoustic motional resistance. Such experimental approach, together with the associated mathematical signal processing and physical modeling, will provide quantitative information on sequence and conformation DNA sequences recognized by specific transcriptional factors as well as affinity and kinetic constants.
机译:该项目的一般目标是开发一种声学生物传感器平台,用于研究蛋白质-DNA结合及其在DNA转录因子研究中的应用。阻抗分析方法使得能够计算在DNA结合时观察到的每单位质量的声能量耗散,从而提供有关束缚分子的尺寸和形状的定量信息。该项目的基本原理依赖于DNA对蛋白质结合对DNA的构象变化和弯曲增加了在声学传感器的表面上固定的DNA膜的刚性。结果,声能量较少被声消耗,通过减小声电阻的变化的减小来发出信号。这样的实验方法,将具有相关联的数学信号处理和物理建模一起,将提供关于由特定的转录因子以及亲和力和动力学常数已识别序列和构象的DNA序列的定量信息。

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