首页> 美国卫生研究院文献>Nucleic Acids Research >Atypical structures of GAA/TTC trinucleotide repeats underlying Friedreich’s ataxia: DNA triplexes and RNA/DNA hybrids
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Atypical structures of GAA/TTC trinucleotide repeats underlying Friedreich’s ataxia: DNA triplexes and RNA/DNA hybrids

机译:GaA / TTC三核苷酸的非典型结构覆盖弗里德雷希的共济失调:DNA三重和RNA / DNA杂种

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摘要

Expansion of the GAA/TTC repeats in the first intron of the FXN gene causes Friedreich’s ataxia. Non-canonical structures are linked to this expansion. DNA triplexes and R-loops are believed to arrest transcription, which results in frataxin deficiency and eventual neurodegeneration. We present a systematic in silico characterization of the possible DNA triplexes that could be assembled with GAA and TTC strands; the two hybrid duplexes [r(GAA):d(TTC) and d(GAA):r(UUC)] in an R-loop; and three hybrid triplexes that could form during bidirectional transcription when the non-template DNA strand bonds with the hybrid duplex (collapsed R-loops, where the two DNA strands remain antiparallel). For both Y·R:Y and R·R:Y DNA triplexes, the parallel third strand orientation is more stable; both parallel and antiparallel protonated d(GA+A)·d(GAA):d(TTC) triplexes are stable. Apparent contradictions in the literature about the R·R:Y triplex stability is probably due to lack of molecular resolution, since shifting the third strand by a single nucleotide alters the stability ranking. In the collapsed R-loops, antiparallel d(TTC+)·d(GAA):r(UUC) is unstable, while parallel d(GAA)·r(GAA):d(TTC) and d(GA+A)·r(GAA):d(TTC) are stable. In addition to providing new structural perspectives for specific therapeutic aims, our results contribute to a systematic structural basis for the emerging field of quantitative R-loop biology.
机译:在FXN基因的第一个内含子中扩展GaA / TTC重复导致Friedreich的共济失调。非规范结构与这种膨胀有关。据信DNA三重和R圈抑制转录,导致脱脂蛋白缺乏和最终神经变性。我们在可以用GaA和TTC股线组装的可能DNA三重链式的硅表征中呈现系统的系统。在R环中的两个混合双链体[R(Gaa):D(TTC)和D(Gaa):R(UUC)];当非模板DNA链与杂交双链体(折叠R环折叠,其中两个DNA链保持反平行)时,可以在双向转录期间形成的三种杂交三种式。对于Y·R:Y和R·R:Y DNA三重,并行第三链取向更稳定;平行和反平行的质子化D(Ga + A)·D(GaA):D(TTC)三重性是稳定的。关于R·R:Y三重稳定性的文献中的表观矛盾可能是由于缺乏分子分辨率,因为通过单个核苷酸移位第三链改变稳定性排名。在折叠的R圈中,反平行D(TTC +)·D(GaA):R(UUC)不稳定,而平行D(Gaa)·R(Gaa):D(TTC)和D(Ga + A)·R (Gaa):D(TTC)是稳定的。除了为特定治疗目标提供新的结构性观点外,我们的结果还有助于新兴定量R环生物学领域的系统结构基础。

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