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Unexpectedly Stable Artificial Duplex from Flexible Acyclic Threoninol

机译:柔性无环苏氨酸的非预期稳定人工双链体

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摘要

A new foldamer, acyclic threoninol nucleic acid (aTNA), has been synthesized by tethering each of the genetic nucleobases A, G, C, and T to d-threoninol molecules, which were then incorporated as building blocks into a scaffold bearing phosphodiester linkages. We found that with its fully complementary strand in an antiparallel fashion, the aTNA oligomer forms an exceptionally stable duplex that is far more stable than corresponding DNA or RNA duplexes, even though single-stranded aTNA is rather flexible and thus does not take a preorganized structure.
机译:通过将每个遗传核碱基A,G,C和T拴系到d-苏氨酸分子上,合成了一种新的foldamer无环苏氨酸核酸(aTNA),然后将其作为构建基掺入带有磷酸二酯键的支架中。我们发现,以反平行方式的完全互补链,aTNA寡聚物形成异常稳定的双链体,比单链DNA或RNA双链体要稳定得多,即使单链aTNA相当灵活且因此没有预先组织的结构。

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