Mendoza Oscar, Gueddouda Nassima Meriem, Boulé Jean-Baptiste, Bourdoncle Anne, Mergny Jean-Louis
University of Bordeaux, ARNA laboratory, Bordeaux, France INSERM, U869, IECB, Pessac, France
University of Bordeaux, ARNA laboratory, Bordeaux, France INSERM, U869, IECB, Pessac, France.
Nucleic Acids Res. 2015 Jun 23;43(11):e71. doi: 10.1093/nar/gkv193. Epub 2015 Mar 12.
Helicases, enzymes that unwind DNA or RNA structure, are present in the cell nucleus and in the mitochondrion. Although the majority of the helicases unwind DNA or RNA duplexes, some of these proteins are known to resolve unusual structures such as G-quadruplexes (G4) in vitro. G4 may form stable barrier to the progression of molecular motors tracking on DNA. Monitoring G4 unwinding by these enzymes may reveal the mechanisms of the enzymes and provides information about the stability of these structures. In the experiments presented herein, we developed a reliable, inexpensive and rapid fluorescence-based technique to monitor the activity of G4 helicases in real time in a 96-well plate format. This system was used to screen a series of G4 structures and G4 binders for their effect on the Pif1 enzyme, a 5' to 3' DNA helicase. This simple assay should be adaptable to analysis of other helicases and G4 structures.
解旋酶是能够解开DNA或RNA结构的酶,存在于细胞核和线粒体中。虽然大多数解旋酶能解开DNA或RNA双链体,但已知其中一些蛋白质在体外可解析异常结构,如G-四链体(G4)。G4可能对沿DNA移动的分子马达的进程形成稳定障碍。监测这些酶对G4的解旋作用可能揭示酶的作用机制,并提供有关这些结构稳定性的信息。在本文所述的实验中,我们开发了一种可靠、廉价且快速的基于荧光的技术,以96孔板形式实时监测G4解旋酶的活性。该系统用于筛选一系列G4结构和G4结合剂对Pif1酶(一种5'至3' DNA解旋酶)的影响。这种简单的测定方法应适用于分析其他解旋酶和G4结构。