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The rotation-coupled sliding of EcoRV

机译:EcoRV的旋转耦合滑动

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It has been proposed that certain type II restriction enzymes (REs), such as EcoRV, track the helical pitch of DNA as they diffuse along DNA, a so-called rotation-coupled sliding. As of yet, there is no direct experimental observation of this phenomenon, but mounting indirect evidence gained from single-molecule imaging of RE-DNA complexes support the hypothesis. We address this issue by conjugating fluorescent labels of varying size (organic dyes, proteins and quantum dots) to EcoRV, and by fusing it to the engineered Rop protein scRM6. Single-molecule imaging of these modified EcoRVs sliding along DNA provides us with their linear diffusion constant (D-1), revealing a significant size dependency. To account for the dependence of D-1 on the size of the EcoRV label, we have developed four theoretical models describing different types of motion along DNA and find that our experimental results are best described by rotation-coupled sliding of the protein. The similarity of EcoRV to other type II REs and DNA binding proteins suggests that this type of motion could be widely preserved in other biological contexts.
机译:已经提出,某些II型限制酶(RE),例如EcoRV,在DNA沿着DNA扩散时追踪DNA的螺旋间距,即所谓的旋转耦合滑动。到目前为止,还没有直接实验观察到这种现象,但是从RE-DNA复合物的单分子成像中获得的越来越多的间接证据支持了这一假设。我们通过将不同大小的荧光标记(有机染料,蛋白质和量子点)缀合到EcoRV,并将其融合到工程Rop蛋白scRM6中来解决此问题。这些修饰的EcoRV沿着DNA滑动的单分子成像为我们提供了它们的线性扩散常数(D-1),显示出显着的尺寸依赖性。为了说明D-1对EcoRV标签大小的依赖性,我们已经开发了四个理论模型来描述沿着DNA的不同类型的运动,并且发现我们的实验结果最好通过蛋白质的旋转耦合滑动来描述。 EcoRV与其他II型RE和DNA结合蛋白的相似性表明,这种类型的运动可以在其他生物学环境中得到广泛保存。

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