Broda Magdalena, Kierzek Elzbieta, Gdaniec Zofia, Kulinski Tadeusz, Kierzek Ryszard
Institute of Bioorganic Chemistry, Polish Academy of Sciences, Noskowskiego 12/14, 61-704 Poznañ, Poland.
Biochemistry. 2005 Aug 16;44(32):10873-82. doi: 10.1021/bi0502339.
Trinucleotide repeat expansion diseases (TREDs) are correlated with elongation of CNG DNA and RNA repeats to pathological level. This paper shows, for the first time, complete data concerning thermodynamic stabilities of RNA with CNG trinucleotide repeats. Our studies include the stability of oligoribonucleotides composed of two to seven of CAG, CCG, CGG, and CUG repeats. The thermodynamic parameters of helix propagation correlated with the presence of multiple N-N mismatches within CNG RNA duplexes were also determined. Moreover, the total stability of CNG RNA hairpins, as well as the contribution of trinucleotide repeats placed only in the stem or loop regions, was evaluated. The improved thermodynamic parameters allow to predict much more accurately the thermodynamic stabilities and structures of CNG RNAs.
三核苷酸重复扩增疾病(TREDs)与CNG DNA和RNA重复序列延长至病理水平相关。本文首次展示了关于具有CNG三核苷酸重复序列的RNA热力学稳定性的完整数据。我们的研究包括由两到七个CAG、CCG、CGG和CUG重复序列组成的寡核糖核苷酸的稳定性。还确定了与CNG RNA双链体内多个N-N错配的存在相关的螺旋延伸热力学参数。此外,评估了CNG RNA发夹的总稳定性,以及仅位于茎区或环区的三核苷酸重复序列的贡献。改进的热力学参数能够更准确地预测CNG RNA的热力学稳定性和结构。