Nakano Mariko, Moody Ellen M, Liang Jing, Bevilacqua Philip C
Department of Chemistry, The Pennsylvania State University, University Park, Pennsylvania 16802, USA.
Biochemistry. 2002 Dec 3;41(48):14281-92. doi: 10.1021/bi026479k.
Hairpins play important roles in the function of DNA, forming cruciforms and affecting processes such as replication and recombination. Temperature gradient gel electrophoresis (TGGE) and in vitro selection have been used to isolate thermodynamically stable DNA hairpins from a six-nucleotide random library. The TGGE-selection process was optimized such that known stable DNA tetraloops were recovered, and the selection appears to be exhaustive. In the selection, four families of exceptionally stable DNA loops were identified: d(cGNNAg), d(cGNABg), d(cCNNGg), and d(gCNNGc). (Lowercase denotes the closing base pair; N = A, C, G, or T; and B = C, G, or T.) It appears that the known stable d(cGNAg) triloop motif can be embedded into a tetraloop, with the extra nucleotide inserted into either the middle of the loop, d(cGNNAg), or at the 3'-end of the loop, d(cGNABg). For d(cGNNAg) and d(cGNABg), a CG closing base pair was strongly preferred over a GC, with DeltaDeltaG degrees (37) approximately 2 kcal/mol. Members of the two families, d(cCNNGg) and d(gCNNGc), are similar in stability. The loop sequences and closing base pairs identified for exceptionally stable DNA tetraloops show many similarities to those known for exceptionally stable RNA tetraloops. These data provide an expanded set of thermodynamic rules for the formation of tetraloops in DNA.
发夹结构在DNA功能中发挥着重要作用,可形成十字形结构并影响复制和重组等过程。温度梯度凝胶电泳(TGGE)和体外筛选已被用于从一个六核苷酸随机文库中分离出热力学稳定的DNA发夹结构。对TGGE筛选过程进行了优化,从而回收了已知的稳定DNA四环结构,并且该筛选似乎是彻底的。在筛选过程中,鉴定出了四个异常稳定的DNA环家族:d(cGNNAg)、d(cGNABg)、d(cCNNGg)和d(gCNNGc)。(小写字母表示封闭碱基对;N = A、C、G或T;B = C、G或T。)似乎已知的稳定d(cGNAg)三环基序可以嵌入到四环中,额外的核苷酸插入到环的中间,即d(cGNNAg),或者插入到环的3'端,即d(cGNABg)。对于d(cGNNAg)和d(cGNABg),CG封闭碱基对比GC更受青睐,ΔΔG°(37)约为2千卡/摩尔。d(cCNNGg)和d(gCNNGc)这两个家族的成员在稳定性上相似。为异常稳定的DNA四环鉴定出的环序列和封闭碱基对与已知的异常稳定的RNA四环有许多相似之处。这些数据为DNA中四环形成提供了一组扩展的热力学规则。