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EcoRI DNA甲基转移酶对DNA结合与弯曲的荧光研究。

Fluorescence study of DNA binding and bending by EcoRI DNA methyltransferase.

作者信息

Ma Baocheng, Wang Jun, Fang Xiaohong

机构信息

Beijing National Laboratory for Molecular Sciences, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100080, PR China.

出版信息

J Phys Chem B. 2006 Oct 5;110(39):19647-51. doi: 10.1021/jp0574293.

Abstract

We have applied fluorescence anisotropy and fluorescence resonance energy transfer (FRET) techniques to study the interaction between EcoRI DNA methyltransferase (M.EcoRI) and its target DNA in solution. Upon binding with M.EcoRI, the dsDNA containing GAATTC bends to flip out the second adenine for methylation. The binding affinity of M.EcoRI to two dsDNA fragments (20 and 38 bp) was studied with fluorescence anisotropy. Their binding constants at different temperatures from 20 to 40 degrees C were obtained, and the thermodynamic parameters of binding were derived. The results showed that M.EcoRI had a higher binding affinity to the short dsDNA strand than to the long one, and its binding to DNA was primarily entropy-driven. By labeling the 5' ends of the 20-bp dsDNA with two fluorescent dyes, fluorescein (FAM) and tetramethylrhodamine (TMR), we were able to monitor the enhanced TMR fluorescence in the presence of M.EcoRI. The end-to-end distance of the dsDNA determined from the FRET efficiency was changed from 72.4 to 63.4 A, and the DNA bending angle was estimated as 57.8 degrees .

摘要

我们应用荧光各向异性和荧光共振能量转移(FRET)技术来研究EcoRI DNA甲基转移酶(M.EcoRI)与其溶液中靶DNA之间的相互作用。与M.EcoRI结合后,含有GAATTC的双链DNA(dsDNA)会弯曲,使第二个腺嘌呤翻转出来进行甲基化。利用荧光各向异性研究了M.EcoRI与两个双链DNA片段(20和38 bp)的结合亲和力。获得了它们在20至40摄氏度不同温度下的结合常数,并推导了结合的热力学参数。结果表明,M.EcoRI对短双链DNA链的结合亲和力高于长链,其与DNA的结合主要由熵驱动。通过用两种荧光染料,即荧光素(FAM)和四甲基罗丹明(TMR)标记20 bp双链DNA的5'端,我们能够监测在M.EcoRI存在下TMR荧光的增强。根据FRET效率确定的双链DNA的端到端距离从72.4 Å变为63.4 Å,DNA弯曲角度估计为57.8度。

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