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Monomeric PcrA helicase processively unwinds plasmid lengths of DNA in the presence of the initiator protein RepD

机译:在引发剂蛋白RepD存在下,单体PcrA解旋酶可逐步解旋DNA的质粒长度

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摘要

The helicase PcrA unwinds DNA during asymmetric replication of plasmids, acting with an initiator protein, in our case RepD. Detailed kinetics of PcrA activity were measured using bulk solution and a single-molecule imaging technique to investigate the oligomeric state of the active helicase complex, its processivity and the mechanism of unwinding. By tethering either DNA or PcrA to a microscope coverslip surface, unwinding of both linear and natural circular plasmid DNA by PcrA/RepD was followed in real-time using total internal reflection fluorescence microscopy. Visualization was achieved using a fluorescent single-stranded DNA-binding protein. The single-molecule data show that PcrA, in combination with RepD, can unwind plasmid lengths of DNA in a single run, and that PcrA is active as a monomer. Although the average rate of unwinding was similar in single-molecule and bulk solution assays, the single-molecule experiments revealed a wide distribution of unwinding speeds by different molecules. The average rate of unwinding was several-fold slower than the PcrA translocation rate on single-stranded DNA, suggesting that DNA unwinding may proceed via a partially passive mechanism. However, the fastest dsDNA unwinding rates measured in the single-molecule unwinding assays approached the PcrA translocation speed measured on ssDNA.
机译:解旋酶PcrA在质粒的不对称复制过程中解开DNA,与起始蛋白(在我们的情况下为RepD)一起起作用。使用本体溶液和单分子成像技术测量了PcrA活性的详细动力学,以研究活性解旋酶复​​合物的寡聚状态,其合成能力和解链机理。通过将DNA或PcrA束缚到显微镜盖玻片表面,使用全内反射荧光显微镜实时跟踪PcrA / RepD展开线性和天然环状质粒DNA的过程。使用荧光单链DNA结合蛋白实现了可视化。单分子数据显示,PcrA与RepD结合可以一次解开DNA质粒的长度,并且PcrA作为单体具有活性。尽管在单分子和本体溶液测定中平均解绕速度相似,但单分子实验显示,不同分子的解绕速度分布广泛。解绕的平均速度比单链DNA的PcrA易位速度慢了几倍,这表明DNA的解绕可能是通过部分被动机制进行的。但是,在单分子解链测定中测得的最快dsDNA解链速率接近在ssDNA上测得的PcrA易位速度。

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