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锶离子(Sr(2+))诱导形成异常稳定的d(GGGTGGGTGGGTGGG)四链体二聚体。

Sr(2+) induces unusually stable d(GGGTGGGTGGGTGGG) quadruplex dimers.

作者信息

Lomidze Levan, Kelley Sean, Gogichaishvili Shota, Metreveli Nunu, Musier-Forsyth Karin, Kankia Besik

机构信息

Institute of Biophysics, Ilia State University, Tbilisi, 0162, Republic of Georgia.

Department of Chemistry and Biochemistry, Center for RNA Biology, The Ohio State University, Columbus, OH, 43210.

出版信息

Biopolymers. 2016 Nov;105(11):811-8. doi: 10.1002/bip.22916.

Abstract

Guanine-rich sequences are able to form quadruplexes consisting of G-quartet structural units. Quadruplexes play an important role in the regulation of gene expression and have therapeutic and biotechnological potential. The HIV-1 integrase inhibitor, (GGGT)4 , and its variants demonstrate unusually high thermal stability. This property has been exploited in the use of quadruplex formation to drive various endergonic reactions of nucleic acids such as isothermal DNA amplification. Quadruplex stability is mainly determined by cations, which specifically bind into the inner core of the structure. In the present work, we report a systematic study of a variant of the HIV-1 integrase inhibitor, GGGTGGGTGGGTGGG (G3T), in the presence of alkali and alkaline-earth cations. We show that Sr(2+) -G3T is characterized by the highest thermal stability and that quadruplex formation requires only one Sr(2+) ion that binds with low micromolar affinity. These concentrations are sufficient to drive robust isothermal quadruplex priming DNA amplification reaction. The Sr(2+) -quadruplexes are also able to form unusually stable dimers through end-to-end stacking. The multimerization can be induced by a combination of quadruplex forming cations (i.e., K(+) or Sr(2+) ) and non-specific Mg(2+) .

摘要

富含鸟嘌呤的序列能够形成由G-四链体结构单元组成的四链体。四链体在基因表达调控中发挥着重要作用,并且具有治疗和生物技术潜力。HIV-1整合酶抑制剂(GGGT)4及其变体表现出异常高的热稳定性。这种特性已被用于利用四链体形成来驱动核酸的各种吸能反应,如等温DNA扩增。四链体稳定性主要由阳离子决定,这些阳离子特异性结合到结构的内核中。在本研究中,我们报告了在碱金属和碱土金属阳离子存在下对HIV-1整合酶抑制剂变体GGGTGGGTGGGTGGG(G3T)的系统研究。我们表明,Sr(2+)-G3T具有最高的热稳定性,并且四链体形成仅需要一个以低微摩尔亲和力结合的Sr(2+)离子。这些浓度足以驱动稳健的等温四链体引发DNA扩增反应。Sr(2+) -四链体还能够通过端对端堆积形成异常稳定的二聚体。多聚化可以由四链体形成阳离子(即K(+)或Sr(2+))和非特异性Mg(2+)的组合诱导。

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