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Atomic force microscopy shows that vaccinia topoisomerase IB generates filaments on DNA in a cooperative fashion

机译:原子力显微镜显示牛痘拓扑异构酶IB以协作方式在DNA上产生细丝

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Type IB DNA topoisomerases cleave and rejoin one strand of the DNA duplex, allowing for the removal of supercoils generated during replication and transcription. In addition, electron microscopy of cellular and viral TopIB-DNA complexes has suggested that the enzyme promotes long-range DNA-DNA crossovers and synapses. Here, we have used the atomic force microscope to visualize and quantify the interaction between vaccinia topoisomerase IB (vTopIB) and DNA. vTopIB was found to form filaments on nicked-circular DNA by intramolecular synapsis of two segments of a single DNA molecule. Measuring the filament length as a function of protein concentration showed that synapsis is a highly cooperative process. At high protein:DNA ratios, synapses between distinct DNA molecules were observed, which led to the formation of large vTopIB-induced DNA clusters. These clusters were observed in the presence of Mg2+, Ca2+ or Mn2+, suggesting that the formation of intermolecular vTopIB-mediated DNA synapsis is favored by screening of the DNA charge.
机译:IB型DNA拓扑异构酶裂解并重新结合DNA双链体的一条链,从而去除复制和转录过程中产生的超螺旋。另外,细胞和病毒TopIB-DNA复合物的电子显微镜显示该酶促进长距离DNA-DNA交换和突触。在这里,我们已经使用原子力显微镜来可视化和量化牛痘拓扑异构酶IB(vTopIB)和DNA之间的相互作用。发现vTopIB通过单个DNA分子的两个片段的分子内突触在有切口的圆形DNA上形成细丝。测量细丝长度与蛋白质浓度的关系,表明突触是一个高度协作的过程。在高的蛋白质:DNA比率下,观察到不同DNA分子之间的突触,这导致了大的vTopIB诱导的DNA簇的形成。在Mg2 +,Ca2 +或Mn2 +的存在下观察到这些簇,表明通过筛选DNA电荷有利于分子间vTopIB介导的DNA突触的形成。

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