Hirao I, Nishimura Y, Tagawa Y, Watanabe K, Miura K
Department of Industrial Chemistry, Faculty of Engineering, University of Tokyo, Japan.
Nucleic Acids Res. 1992 Aug 11;20(15):3891-6. doi: 10.1093/nar/20.15.3891.
A small DNA fragment having a characteristic sequence d(GCGAAAGC) has been shown to form an extraordinarily stable mini-hairpin structure and to have an unusually rapid mobility in polyacrylamide gel electrophoresis, even when containing 7M urea. Here, we have studied the stability of the various sequence variants of d(GCGAAAGC) and the corresponding RNA fragments. Many such sequence variants form stable mini-hairpins in a similar manner to the d(GCGAAAGC) sequence. The RNA fragment, r(GCGAAAGC) also forms a mini-hairpin structure with less stability. The DNA mini-hairpins with GAAA or GAA loop are much more stable than DNA and RNA mini-hairpins with other loop sequence so far as has been examined. The stability difference between DNA and RNA mini-hairpins may be deduced to the stem structures formed by DNA (B form) and RNA (A form). The stable hairpins consisting of the GCGAAAGC sequence cause strong band compression on the sequencing gel. This phenomenon should be carefully considered in DNA sequencing.
一段具有特征序列d(GCGAAAGC)的小DNA片段已被证明能形成极其稳定的小发夹结构,并且在聚丙烯酰胺凝胶电泳中具有异常快速的迁移率,即使含有7M尿素也是如此。在此,我们研究了d(GCGAAAGC)的各种序列变体以及相应RNA片段的稳定性。许多此类序列变体以与d(GCGAAAGC)序列相似的方式形成稳定的小发夹。RNA片段r(GCGAAAGC)也形成稳定性较低的小发夹结构。就目前所检测的情况而言,具有GAAA或GAA环的DNA小发夹比具有其他环序列的DNA和RNA小发夹稳定得多。DNA和RNA小发夹之间的稳定性差异可能归因于由DNA(B型)和RNA(A型)形成的茎结构。由GCGAAAGC序列组成的稳定发夹在测序凝胶上会导致强烈的条带压缩。在DNA测序中应仔细考虑这一现象。