首页> 外文期刊>The European physical journal, E. Soft matter >Secondary structure formation of homopolymeric single-stranded nucleic acids including force and loop entropy: Implications for DNA hybridization
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Secondary structure formation of homopolymeric single-stranded nucleic acids including force and loop entropy: Implications for DNA hybridization

机译:均聚物单链核酸的二级结构形成,包括力和环熵:对DNA杂交的影响

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摘要

Loops are essential secondary structure elements in folded DNA and RNA molecules and proliferate close to the melting transition. Using a theory for nucleic acid secondary structures that accounts for the logarithmic entropy -c ln m for a loop of length m, we study homopolymeric single-stranded nucleic acid chains under external force and varying temperature. In the thermodynamic limit of a long strand, the chain displays a phase transition between a low-temperature/low-force compact (folded) structure and a high-temperature/ high-force molten (unfolded) structure. The influence of c on phase diagrams, critical exponents, melting, and force extension curves is derived analytically. For vanishing pulling force, only for the limited range of loop exponents 2 < c ? 2.479 a melting transition is possible; for c ≤ 2 the chain is always in the folded phase and for 2.479 ? c always in the unfolded phase. A force-induced melting transition with singular behavior is possible for all loop exponents c < 2.479 and can be observed experimentally by single-molecule force spectroscopy. These findings have implications for the hybridization or denaturation of double-stranded nucleic acids. The Poland-Scheraga model for nucleic acid duplex melting does not allow base pairing between nucleotides on the same strand in denatured regions of the double strand. If the sequence allows these intra-strand base pairs, we show that for a realistic loop exponent c ≈ 2.1 pronounced secondary structures appear inside the single strands. This leads to a lower melting temperature of the duplex than predicted by the Poland-Scheraga model. Further, these secondary structures renormalize the effective loop exponent ?, which characterizes the weight of a denatured region of the double strand, and thus affect universal aspects of the duplex melting transition.
机译:环是折叠的DNA和RNA分子中必不可少的二级结构元素,并在接近熔解转变的位置扩散。使用一种解释长度为m的环的对数熵-c ln m的核酸二级结构的理论,我们研究了在外力和温度变化下的均聚单链核酸链。在长链的热力学极限中,链在低温/低力的致密(折叠)结构与高温/高力的熔融(未折叠)结构之间显示出相变。通过分析可以得出c对相图,临界指数,熔化和力延伸曲线的影响。对于消失的拉力,仅在有限范围的环指数2

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