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Visualizing Transient Watson-Crick Like Mispairs in DNA and RNA Duplexes

机译:可视化DNA和RNA双链体中的瞬时Watson-Crick相似配对

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摘要

Rare tautomeric and anionic nucleobases are believed to play fundamental biological roles but their prevalence and functional importance has remained elusive because they exist transiently, in low-abundance, and involve subtle movements of protons that are difficult to visualize. Using NMR relaxation dispersion, we show that wobble dG•dT and rG•rU mispairs in DNA and RNA duplexes exist in dynamic equilibrium with short-lived, low-populated Watson-Crick like mispairs that are stabilized by rare enolic or anionic bases. These mispairs can evade Watson-Crick fidelity checkpoints and form with probabilities (10−3-10−5) that strongly imply a universal role in replication and translation errors. Our results indicate that rare tautomeric and anionic bases are widespread in nucleic acids, expanding their structural and functional complexity beyond that attainable with canonical bases.
机译:罕见的互变异构和阴离子核碱基起着基本的生物学作用,但是它们的普遍性和功能重要性仍然难以捉摸,因为它们以低丰度瞬时存在,并且涉及质子的细微运动,很难观察到。使用NMR弛豫弥散,我们显示DNA和RNA双链体中的摆动dG•dT和rG•rU错配对以动态平衡的形式存在,且存在短暂的,人口稀少的Watson-Crick像错配对,并通过稀有的烯醇或阴离子碱稳定。这些错误配对可以规避Watson-Crick保真度检查点,并以概率(10 -3 -10 -5 )形成,这些概率强烈暗示了复制和转换错误中的普遍作用。我们的结果表明,罕见的互变异构和阴离子碱基在核酸中广泛存在,其结构和功能复杂性超出了规范碱基所能达到的范围。

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