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Stability of an RNA•DNA–DNA triple helix depends on base triplet composition and length of the RNA third strand

机译:RNA•DNA-DNA三链螺旋的稳定性取决于碱基三链体的组成和RNA第三链的长度

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摘要

Recent studies suggest noncoding RNAs interact with genomic DNA, forming an RNA•DNA–DNA triple helix that regulates gene expression. However, base triplet composition of pyrimidine motif RNA•DNA–DNA triple helices is not well understood beyond the canonical U•A–T and C•G–C base triplets. Using native gel-shift assays, the relative stability of 16 different base triplets at a single position, Z•X–Y (where Z = C, U, A, G and X–Y = A–T, G–C, T–A, C–G), in an RNA•DNA–DNA triple helix was determined. The canonical U•A–T and C•G–C base triplets were the most stable, while three non-canonical base triplets completely disrupted triple-helix formation. We further show that our RNA•DNA–DNA triple helix can tolerate up to two consecutive non-canonical A•G–C base triplets. Additionally, the RNA third strand must be at least 19 nucleotides to form an RNA•DNA–DNA triple helix but increasing the length to 27 nucleotides does not increase stability. The relative stability of 16 different base triplets in DNA•DNA–DNA and RNA•RNA–RNA triple helices was distinctly different from those in RNA•DNA–DNA triple helices, showing that base triplet stability depends on strand composition being DNA and/or RNA. Multiple factors influence the stability of triple helices, emphasizing the importance of experimentally validating formation of computationally predicted triple helices.
机译:最近的研究表明,非编码RNA与基因组DNA相互作用,形成调节基因表达的RNA•DNA-DNA三重螺旋。然而,除规范的U•A–T和C•G–C基本三重态外,对嘧啶基序RNA•DNA–DNA三重螺旋的碱基三重态组成还没有很好的了解。使用天然凝胶迁移分析,在单个位置Z•X–Y(其中Z = C,U,A,G和X–Y = A–T,G–C,T –A,C–G),在RNA•DNA-DNA三重螺旋中被测定。规范的U•A–T和C•G–C基本三元组最稳定,而三个非经典基础三元组完全破坏了三螺旋的形成。我们进一步证明,我们的RNA•DNA–DNA三重螺旋可以耐受两个连续的非规范A•G–C基础三重态。此外,RNA第三链必须至少为19个核苷酸才能形成RNA•DNA-DNA三重螺旋,但将长度增加到27个核苷酸不会增加稳定性。 DNA•DNA–DNA和RNA•RN​​A–RNA三重螺旋中16个不同碱基三胞胎的相对稳定性与RNA•DNA–DNA三重螺旋中的相对稳定性显着不同,这表明碱基三重态稳定性取决于链组成为DNA和/或RNA。多个因素影响三重螺旋的稳定性,强调了通过实验验证计算预测的三重螺旋的形成的重要性。

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