Hannoush Rami N, Damha Masad J
Department of Chemistry, McGill University, Montreal, Quebec, Canada.
Nucleosides Nucleotides Nucleic Acids. 2005;24(10-12):1519-30. doi: 10.1080/15257770500265794.
We have investigated the effect of switching ribose to deoxyribose at the closing base-pair of an extra-stable RNA hairpin. Specifically, we studied the sequence 5'-GGAC(UUCG)GUCC, a dodecanucleotide that folds into a well-characterized, "extra stable" RNA hairpin structure. Recently, we showed that hairpins containing a 2',5'-linked (UUCG) loop instead of the native 3',5'-linked loop also exhibit extra-stability (Hannoush and Damha, J. Am. Chem. Soc., 2001, 123, 12368-12374). In this article, we show that the ribose units located at the loop-closing positions (i.e., rC4 and rG9) contribute significantly to the stabilization of RNA hairpins, particularly those containing the 3',5'-UUCG loop. Interestingly, the requirement of rC4 and rG9 is more relaxed for DNA hairpins containing the 2',5'-UUCC loop and, in fact, they may be replaced altogether (ribose--> deoxyribose) without affecting stability. The results broaden our understanding of the behavior of highly stable (UUCG) hairpin loops and how they respond to structural perturbation of the loop-closing base pairs.
我们研究了在一个超稳定RNA发夹的封闭碱基对处将核糖转换为脱氧核糖的影响。具体而言,我们研究了序列5'-GGAC(UUCG)GUCC,这是一个十二聚体核苷酸,它折叠成一个特征明确的“超稳定”RNA发夹结构。最近,我们表明,含有2',5'-连接的(UUCG)环而非天然3',5'-连接环的发夹也表现出超稳定性(Hannoush和Damha,《美国化学会志》,2001年,123卷,12368 - 12374页)。在本文中,我们表明位于环封闭位置的核糖单元(即rC4和rG9)对RNA发夹的稳定性有显著贡献,特别是那些含有3',5'-UUCG环的发夹。有趣的是,对于含有2',5'-UUCC环的DNA发夹,对rC4和rG9的要求更为宽松,实际上,它们可以完全被取代(核糖→脱氧核糖)而不影响稳定性。这些结果拓宽了我们对高度稳定的(UUCG)发夹环行为以及它们如何响应环封闭碱基对结构扰动的理解。