Charvin G, Bensimon D, Croquette V
Laboratoire de Physique Statistique, Ecole Normale Supérieure, Unité Mixte de Recherche 8550 Centre National de la Recherche Scientifique, 24 Rue Lhomond, 75231 Paris Cedex 05, France.
Proc Natl Acad Sci U S A. 2003 Aug 19;100(17):9820-5. doi: 10.1073/pnas.1631550100. Epub 2003 Aug 5.
Type-II topoisomerases are responsible for untangling DNA during replication by removing supercoiled and interlinked DNA structures. Using a single-molecule micromanipulation setup, we follow the real-time decatenation of two mechanically braided DNA molecules by Drosophila melanogaster topoisomerase (Topo) II and Escherichia coli Topo IV. Although Topo II relaxes left-handed (L) and right-handed (R-) braids similarly at a rate of approximately 2.9 s-1, Topo IV has a marked preference for L-braids, which it relaxes completely and processively at a rate of approximately 2.4 s-1. However, Topo IV can unlink R-braids at about half that rate when they supercoil to form L-plectonemes. These results imply that the preferred substrate for unlinking by Topo IV has the symmetry of an L-crossing and shed new light on the decatenation of daughter strands during DNA replication, which are usually assumed to be linked in an R-braid.
II型拓扑异构酶负责在复制过程中通过去除超螺旋和相互连接的DNA结构来解开DNA。使用单分子微操纵装置,我们实时跟踪果蝇拓扑异构酶(Topo)II和大肠杆菌Topo IV对两个机械编织的DNA分子的解连环过程。虽然Topo II以大约2.9 s-1的速率类似地松弛左手(L)和右手(R)编织物,但Topo IV对L编织物有明显偏好,它以大约2.4 s-1的速率完全且连续地松弛L编织物。然而,当R编织物超螺旋形成L-扭结时,Topo IV可以以大约一半的速率解开R编织物。这些结果表明,Topo IV用于解连环的首选底物具有L交叉的对称性,并为DNA复制过程中通常假定以R编织物形式连接的子链的解连环提供了新的线索。