Chen Liang, Huang Li
State Key Laboratory of Microbial Resources, Institute of Microbiology, Chinese Academy of Sciences, Beijing 100080, China.
Mol Microbiol. 2006 May;60(3):783-94. doi: 10.1111/j.1365-2958.2006.05133.x.
Topoisomerase III from the hyperthermophilic archaeon Sulfolobus solfataricus (Sso topo III) is optimally active in DNA relaxation at 75 degrees C. We report here that Sso topo III-catalysed DNA cleavage and religation differed significantly in temperature dependence: the enzyme was most active in cleaving ssDNA containing a cleavage site at 25-50 degrees C, but was efficient in rejoining the cleaved DNA strand only at higher temperatures (e.g. > or = 45 degrees C). The failure of Sso topo III to rejoin the cleaved DNA strand efficiently appeared to be responsible for the inability of the enzyme to relax negatively supercoiled DNA at low temperature (e.g. 25 degrees C). Intriguingly, Sso topo III facilitated DNA annealing although it showed higher affinity for ssDNA than for dsDNA. Religation of the DNA strand cleaved by Sso topo III was drastically enhanced when the DNA was allowed to anneal to a complementary non-cleaved oligonucleotide, presumably as a result of destabilization of the interaction between the enzyme and the cleaved strand through the formation of duplex DNA. A region in the non-cleaved strand corresponding to a sequence containing six bases on the 5' side and two bases on the 3' side of the cleavage site in the cleaved strand was crucial to the annealing-promoted religation. However, the annealing-promoted religation was relatively insensitive to mismatches in this region and the region conserved for oligonucleotide cleavage, except for that at the 5' end of the broken strand. These results suggest that Sso topo III is well suited for a role in DNA rewinding, whether it leads to homoduplex or heteroduplex formation.
嗜热古菌硫磺矿硫化叶菌(Sulfolobus solfataricus)的拓扑异构酶III(Sso topo III)在75摄氏度时对DNA松弛具有最佳活性。我们在此报告,Sso topo III催化的DNA切割和重新连接在温度依赖性上存在显著差异:该酶在25至50摄氏度时切割含有切割位点的单链DNA最活跃,但仅在较高温度(如≥45摄氏度)时才能有效地重新连接切割后的DNA链。Sso topo III无法有效重新连接切割后的DNA链似乎是该酶在低温(如25摄氏度)下无法松弛负超螺旋DNA的原因。有趣的是,尽管Sso topo III对单链DNA的亲和力高于双链DNA,但它促进了DNA退火。当DNA与互补的未切割寡核苷酸退火时,Sso topo III切割的DNA链的重新连接显著增强,这可能是由于通过形成双链DNA使酶与切割链之间的相互作用不稳定所致。未切割链中与切割链上切割位点5'侧含六个碱基和3'侧含两个碱基的序列相对应的区域对于退火促进的重新连接至关重要。然而,退火促进的重新连接对该区域以及寡核苷酸切割保守区域中的错配相对不敏感,除了断裂链5'端的错配。这些结果表明,无论导致同源双链还是异源双链形成,Sso topo III都非常适合在DNA复绕中发挥作用。