Gaillard Claire, Strauss François
Muséum National d'Histoire Naturelle, Paris, France.
PLoS One. 2015 Mar 23;10(3):e0119368. doi: 10.1371/journal.pone.0119368. eCollection 2015.
DNA hemicatenanes, one of the simplest possible junctions between two double stranded DNA molecules, have frequently been mentioned in the literature for their possible function in DNA replication, recombination, repair, and organization in chromosomes. They have been little studied experimentally, however, due to the lack of an appropriate method for their preparation. Here we have designed a method to build hemicatenanes from two small circular DNA molecules. The method involves, first, the assembly of two linear single strands and their circularization to form a catenane of two single stranded circles, and, second, the addition and base-pairing of the two single stranded circles complementary to the first ones, followed by their annealing using DNA topoisomerase I. The product was purified by gel electrophoresis and characterized. The arrangement of strands was as expected for a hemicatenane and clearly distinct from a full catenane. In addition, each circle was unwound by an average of half a double helical turn, also in excellent agreement with the structure of a hemicatenane. It was also observed that hemicatenanes are quickly destabilized by a single cut on either of the two strands passing inside the junction, strongly suggesting that DNA strands are able to slide easily inside the hemicatenane. This method should make it possible to study the biochemical properties of hemicatenanes and to test some of the hypotheses that have been proposed about their function, including a possible role for this structure in the organization of complex genomes in loops and chromosomal domains.
DNA半连环体是两个双链DNA分子之间最简单的连接方式之一,因其在DNA复制、重组、修复以及染色体组织中的可能作用,在文献中经常被提及。然而,由于缺乏合适的制备方法,对其进行的实验研究很少。在此,我们设计了一种从两个小的环状DNA分子构建半连环体的方法。该方法首先包括两条线性单链的组装及其环化以形成两个单链环的连环体,其次是与第一个单链环互补的两个单链环的添加和碱基配对,随后使用DNA拓扑异构酶I进行退火。产物通过凝胶电泳纯化并进行表征。链的排列符合半连环体的预期,并且与完全连环体明显不同。此外,每个环平均解开了半个双螺旋圈,这也与半连环体的结构非常吻合。还观察到,半连环体在连接内部通过的两条链中的任何一条上的单次切割都会迅速使其不稳定,这强烈表明DNA链能够在半连环体内轻松滑动。这种方法应该能够研究半连环体的生化特性,并检验一些关于其功能提出的假设,包括该结构在环状和染色体结构域中复杂基因组组织中的可能作用。