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用于实时研究GEN1对霍利迪连接体进行拆分的单分子荧光共振能量转移方法。

Single-Molecule Förster Resonance Energy Transfer Methods for Real-Time Investigation of the Holliday Junction Resolution by GEN1.

作者信息

Sobhy Mohamed A, Bralić Amer, Raducanu Vlad-Stefan, Tehseen Muhammad, Ouyang Yujing, Takahashi Masateru, Rashid Fahad, Zaher Manal S, Hamdan Samir M

机构信息

Laboratory of DNA Replication and Recombination, Biological and Environmental Sciences and Engineering Division (BESE), King Abdullah University of Science and Technology (KAUST);

Laboratory of DNA Replication and Recombination, Biological and Environmental Sciences and Engineering Division (BESE), King Abdullah University of Science and Technology (KAUST).

出版信息

J Vis Exp. 2019 Sep 18(151). doi: 10.3791/60045.

Abstract

Bulk methods measure the ensemble behavior of molecules, in which individual reaction rates of the underlying steps are averaged throughout the population. Single-molecule Förster resonance energy transfer (smFRET) provides a recording of the conformational changes taking place by individual molecules in real-time. Therefore, smFRET is powerful in measuring structural changes in the enzyme or substrate during binding and catalysis. This work presents a protocol for single-molecule imaging of the interaction of a four-way Holliday junction (HJ) and gap endonuclease I (GEN1), a cytosolic homologous recombination enzyme. Also presented are single-color and two-color alternating excitation (ALEX) smFRET experimental protocols to follow the resolution of the HJ by GEN1 in real-time. The kinetics of GEN1 dimerization are determined at the HJ, which has been suggested to play a key role in the resolution of the HJ and has remained elusive until now. The techniques described here can be widely applied to obtain valuable mechanistic insights of many enzyme-DNA systems.

摘要

整体方法测量分子的整体行为,其中基础步骤的各个反应速率在整个群体中进行平均。单分子荧光共振能量转移(smFRET)可实时记录单个分子发生的构象变化。因此,smFRET在测量结合和催化过程中酶或底物的结构变化方面非常强大。这项工作提出了一种用于对四链体霍利迪连接体(HJ)与间隙核酸内切酶I(GEN1,一种胞质同源重组酶)相互作用进行单分子成像的方案。还介绍了用于实时跟踪GEN1对HJ进行切割的单色和双色交替激发(ALEX)smFRET实验方案。确定了GEN1在HJ处二聚化的动力学,这被认为在HJ的切割中起关键作用,并且到目前为止一直难以捉摸。这里描述的技术可以广泛应用于获得许多酶 - DNA系统的有价值的机制见解。

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