Zhou H, Zhang Y, Ou-Yang Z C
Institute of Theoretical Physics, The Chinese Academy of Sciences, P.O. Box 2735, Beijing 100080, China.
Phys Rev Lett. 2001 Jan 8;86(2):356-9. doi: 10.1103/PhysRevLett.86.356.
The structural property of a poly( dG-dC) or poly( dA-dT) nucleotide is investigated. At low force and room temperatures, the polymer takes on compact hairpin structures. An abrupt transition from hairpin to random coil occurs at certain critical forces, its high cooperativity is related to the unfavorable formation of hairpin and other kinds of looped structures. It is hence necessary to consider the enthalpic effects of single-stranded loops in realistic models of RNA folding. A possible new way to obtain the statistical weights of elementary nucleotide arrangements is by single-macromolecular mechanical measurements on specifically designed polynucleotides.
研究了聚(dG-dC)或聚(dA-dT)核苷酸的结构特性。在低力和室温下,聚合物呈现紧密的发夹结构。在某些临界力下会发生从发夹到无规卷曲的突然转变,其高协同性与发夹和其他类型环状结构的不利形成有关。因此,在RNA折叠的实际模型中考虑单链环的焓效应是必要的。获得基本核苷酸排列统计权重的一种可能的新方法是通过对专门设计的多核苷酸进行单大分子力学测量。