Department of Chemistry , University of Utah , Salt Lake City , Utah 84112 , United States.
Department of Chemistry , Emory University , Atlanta , Georgia 30322 , United States.
ACS Synth Biol. 2020 Feb 21;9(2):249-253. doi: 10.1021/acssynbio.9b00471. Epub 2020 Jan 13.
The heteroduplex hybridization thermodynamics of DNA with either RNA or TNA are greatly affected by DNA pyrimidine content, where increased DNA pyrimidine content leads to significantly increased duplex stability. Little is known, however, about the effect that purine or pyrimidine content has on the hybridization kinetics of these duplexes. In this work, single-molecule imaging is used to measure the hybridization kinetics of oligonucleotides having varying DNA pyrimidine content with complementary DNA, RNA, and TNA sequences. Results suggest that the change in duplex stability from DNA pyrimidine content (corresponding to purine content in the complementary TNA or RNA) is primarily due to changes in the dissociation rate, and not single-strand ordering or other structural changes that increase the association rate. Decreases in heteroduplex hybridization rates with pyrimidine content are similar for RNA and TNA, indicating that TNA behaves as a kinetic analogue for RNA.
DNA 与 RNA 或 TNA 的异源双链杂交热力学受 DNA 嘧啶含量的极大影响,其中 DNA 嘧啶含量的增加会导致双链稳定性显著增加。然而,关于嘌呤或嘧啶含量对这些双链杂交动力学的影响,人们知之甚少。在这项工作中,使用单分子成像技术来测量具有不同 DNA 嘧啶含量的寡核苷酸与互补 DNA、RNA 和 TNA 序列的杂交动力学。结果表明,双链稳定性的变化来自 DNA 嘧啶含量(对应于互补 TNA 或 RNA 中的嘌呤含量)主要是由于解离速率的变化,而不是增加结合速率的单链排序或其他结构变化。异源双链杂交速率随嘧啶含量的降低在 RNA 和 TNA 中相似,表明 TNA 作为 RNA 的动力学类似物。