Institute of Physics, Bhubaneswar 751005, India.
J Phys Condens Matter. 2010 Apr 21;22(15):155102. doi: 10.1088/0953-8984/22/15/155102. Epub 2010 Mar 9.
A repair protein like RecG moves the stalled replication fork in the direction from the zipped to the unzipped state of DNA. It is proposed here that a softening of the zipped-unzipped interface at the fork results in the front propagating towards the unzipped side. In this scenario, an ordinary helicase destabilizes the zipped state locally near the interface and the fork propagates towards the zipped side. The softening of the interface can be produced by the aromatic interaction, predicted from the crystal structure, between RecG and the nascent broken base pairs at the Y-fork. A numerical analysis of the model also reveals the possibility of a stop and go type motion.
一种像 RecG 这样的修复蛋白将停滞的复制叉朝着 DNA 的解链状态方向移动。这里提出的模型是,在叉状结构处解链-未解链界面的软化导致前向朝着未解链侧推进。在这种情况下,普通的解旋酶会使界面附近的解链状态局部失稳,复制叉朝着解链侧移动。这种界面软化可以通过 RecG 与 Y 型叉处新生断裂碱基对之间的芳香族相互作用来产生,这种相互作用是根据晶体结构预测出来的。该模型的数值分析还揭示了停止和启动运动的可能性。