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首页> 外文期刊>ACS nano >Topological Linkage of DNA Tiles Bonded by Paranemic Cohesion
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Topological Linkage of DNA Tiles Bonded by Paranemic Cohesion

机译:旁向凝聚力结合的DNA瓦片的拓扑链接。

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摘要

Catenation is the process by which cyclic strands are combined like the links of a chain, whereas knotting changes the linking properties of a single strand. In the cell, topoisomerases catalyzing strand passage operations enable the knotting and catenation of DNA so that single- or double-stranded segments can be passed through each other. Here, we use a system of closed DNA structures involving a paranemic motif, called PX-DNA, to bind double strands of DNA together. These PX-cohesive closed molecules contain complementary loops whose linking by Escherichia coli topoisomerase 1 (Topo 1) leads to various types of catenated and knotted structures. We were able to obtain specific DNA topological constructs by varying the lengths of the complementary tracts between the complementary loops. The formation of the structures was analyzed by denaturing gel electrophoresis, and the various topologies of the constructs were characterized using the program Knotilus.
机译:链化是环状链像链的链节一样被组合的过程,而打结改变了单链的链结性质。在细胞中,拓扑异构酶催化链通过操作使DNA能够打结和连接,从而使单链或双链节段可以彼此穿过。在这里,我们使用一个封闭的DNA结构系统,该结构包含一个称为PX-DNA的寄生性基序,将DNA的双链结合在一起。这些具有PX粘性的闭合分子包含互补环,这些环通过大肠杆菌拓扑异构酶1(Topo 1)连接而形成各种类型的链状和打结结构。通过改变互补环之间互补链的长度,我们能够获得特定的DNA拓扑结构。通过变性凝胶电泳分析结构的形成,并使用程序Knotilus表征构建体的各种拓扑。

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