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TNA:DNA双链体的热稳定性趋势揭示了对嘌呤的强烈依赖性。

Thermostability Trends of TNA:DNA Duplexes Reveal Strong Purine Dependence.

作者信息

Lackey Hershel H, Peterson Eric M, Chen Zhe, Harris Joel M, Heemstra Jennifer M

机构信息

Department of Chemistry , University of Utah , Salt Lake City , Utah 84112 , United States.

Department of Chemistry , Emory University , Atlanta , Georgia 30322 , United States.

出版信息

ACS Synth Biol. 2019 May 17;8(5):1144-1152. doi: 10.1021/acssynbio.9b00028. Epub 2019 Apr 17.

Abstract

The development of high fidelity polymerases and streamlined synthesis of threose nucleic acid (TNA) triphosphates and phosphoramidites has made TNA accessible as a motif for generating nuclease-resistant high-affinity aptamers, antisense oligos, and synthetic genetic biopolymers. Little is known, however, about the thermostability trends of TNA:DNA duplexes. Here we investigate the thermostability of 14 TNA:DNA duplexes with the goal of elucidating the fundamental factors governing TNA:DNA duplex stability. We find that purine content in TNA significantly influences the stability and conformation of TNA:DNA duplexes. Low TNA purine content destabilizes duplexes, with T values often 5 °C lower than analogous DNA:DNA and RNA:DNA duplexes. By contrast, TNA:DNA duplexes having high TNA purine content display greater stability than DNA:DNA or RNA:DNA duplexes having the same sequences. High TNA purine content leads TNA:DNA duplexes to adopt conformations similar to RNA:RNA (A-form) configuration, whereas duplexes with low TNA purine content have conformations more similar to DNA:DNA (B-form) configuration. These insights provide a basis for understanding and predicting TNA:DNA duplex stability, which is anticipated to guide the practical use of TNA in biotechnology applications.

摘要

高保真聚合酶的发展以及核糖核酸(TNA)三磷酸酯和亚磷酰胺的简化合成,使得TNA能够作为一种基序,用于生成抗核酸酶的高亲和力适体、反义寡核苷酸和合成遗传生物聚合物。然而,关于TNA:DNA双链体的热稳定性趋势,人们知之甚少。在这里,我们研究了14种TNA:DNA双链体的热稳定性,目的是阐明控制TNA:DNA双链体稳定性的基本因素。我们发现,TNA中的嘌呤含量显著影响TNA:DNA双链体的稳定性和构象。低TNA嘌呤含量会使双链体不稳定,其解链温度(T值)通常比类似的DNA:DNA和RNA:DNA双链体低5℃。相比之下,具有高TNA嘌呤含量的TNA:DNA双链体比具有相同序列的DNA:DNA或RNA:DNA双链体表现出更高的稳定性。高TNA嘌呤含量会使TNA:DNA双链体采取类似于RNA:RNA(A构象)的构象,而低TNA嘌呤含量的双链体具有更类似于DNA:DNA(B构象)的构象。这些见解为理解和预测TNA:DNA双链体稳定性提供了基础,预计将指导TNA在生物技术应用中的实际使用。

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