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DNA“颈部”的构象与热力学。双链中三臂分支形成的模型。

Conformation and thermodynamics of DNA "necks". Models for three-arm branch formation in a duplex.

作者信息

Zhong M, Kallenbach N R

机构信息

Department of Chemistry, New York University, NY 10003.

出版信息

J Mol Biol. 1993 Apr 5;230(3):766-78. doi: 10.1006/jmbi.1993.1199.

Abstract

The properties of three-arm DNA junctions differ from those of four-arm junctions in several respects. Most apparently, bases flanking the branch are reactive to single strand specific agents in three-arm junctions but not four-arm junctions. To determine the basis for this, we have designed and synthesized a series of complexes in which a short duplex, a neck, progressively extends from a parent 16-mer DNA duplex. These structure allow us to investigate how a three-arm branch forms, and how its properties change as the neck extends. Comparison of the properties of a nicked duplex with those of the neck structures using native gel electrophoresis with reporter arms attached reveals progressively greater geometrical perturbation of the complexes as the number of base-pairs in the neck increases. Footprinting by single-strand specific reagents indicates that the reactivity to single-strand reagents near the branch occurs when only a single pair is possible. The branch in each neck interacts tightly with ethidium, as does a nick in the same duplex. The thermodynamics of neck formation have been evaluated by calorimetry and from the concentration dependence of absorbance temperature profiles. Each neck complex is destabilized with respect to duplex DNA or a nicked duplex, and has a lower enthalpy of formation despite the increased number of base-pairs present. A model is proposed to account for these properties in which the bases in the pair adjacent to the duplex interact directly with the duplex, via transient insertion.

摘要

三臂DNA接头的性质在几个方面与四臂接头不同。最明显的是,在三臂接头中,分支两侧的碱基对单链特异性试剂有反应,而在四臂接头中则没有。为了确定其基础,我们设计并合成了一系列复合物,其中一个短双链体(颈部)从一个亲本16聚体DNA双链体逐渐延伸。这些结构使我们能够研究三臂分支是如何形成的,以及随着颈部的延伸其性质如何变化。使用连接有报告臂的天然凝胶电泳比较带切口双链体和颈部结构的性质,结果表明随着颈部碱基对数量的增加,复合物的几何扰动逐渐增大。单链特异性试剂的足迹分析表明,当只有一对碱基对时,分支附近对单链试剂的反应性就会出现。每个颈部的分支与溴化乙锭紧密相互作用,同一双链体中的切口也是如此。通过量热法以及吸光度温度曲线的浓度依赖性对颈部形成的热力学进行了评估。相对于双链DNA或带切口的双链体,每个颈部复合物都不稳定,尽管存在的碱基对数量增加,但其形成焓较低。提出了一个模型来解释这些性质,其中与双链体相邻的碱基对通过瞬时插入直接与双链体相互作用。

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