Lilley D M
Nucleic Acids Res. 1981 Mar 25;9(6):1271-89. doi: 10.1093/nar/9.6.1271.
Short inverted repeat sequences adopt hairpin stem-loop type structures in supercoiled closed circular DNA molecules, demonstrated by S1 nuclease cleavage. Fine mapping of cleavage frequencies is in good agreement with expected cleavage patterns based upon the interaction between an unpaired loop and a sterically bulky enzyme molecule. Whilst the topological properties of underwound DNA circles depend ultimately upon reduced linkage, necessarily a global molecular property, hairpin loop formation is an essentially local property. Thus molecular size is unimportant for the S1 hypersensitivity of the Co1E1 inverted repeat. Furthermore, a 440 bp Sau3AI, EcoRI fragment of Co1E1 which contains the inverted repeat has been cloned into pBR322 whereupon it exhibits S1 cleavage similar to Co1E1 in the supercoiled recombinant molecule. The effect is therefore both local and transmissible. Direct competition, between inverted repeats in the recombinant, coupled with close examination of flanking sequences, enables some simple 'rules' for base pairing in hairpin loops to be formulated. Whilst limited G-T and A-C base pairing appears not to be destabilising, A-G, T-C or loop outs are highly destabilising.
短反向重复序列在超螺旋闭环DNA分子中形成发夹茎环型结构,这已通过S1核酸酶切割得到证明。切割频率的精细定位与基于未配对环与空间位阻较大的酶分子之间相互作用的预期切割模式高度一致。虽然解旋DNA环的拓扑性质最终取决于减少的连接数,这必然是一种整体分子性质,但发夹环的形成本质上是一种局部性质。因此,分子大小对ColE1反向重复序列的S1超敏感性并不重要。此外,ColE1的一个包含反向重复序列的440bp Sau3AI、EcoRI片段已被克隆到pBR322中,随后在超螺旋重组分子中它表现出与ColE1相似的S1切割。因此,这种效应既是局部的,也是可传递的。通过重组体中反向重复序列之间的直接竞争,以及对侧翼序列的仔细检查,可以制定一些关于发夹环中碱基配对的简单“规则”。虽然有限的G-T和A-C碱基配对似乎不会使结构不稳定,但A-G、T-C或环出则会使结构高度不稳定。