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利用离频糖碳 R 弛豫弥散研究致突变的 Watson-Crick 型 G·T 错配的构象转变。

Probing conformational transitions towards mutagenic Watson-Crick-like G·T mismatches using off-resonance sugar carbon R relaxation dispersion.

机构信息

Department of Biochemistry, Duke University School of Medicine, Durham, NC, 27710, USA.

Nymirum, 4324 S. Alston Avenue, Durham, NC, 27713, USA.

出版信息

J Biomol NMR. 2020 Sep;74(8-9):457-471. doi: 10.1007/s10858-020-00337-7. Epub 2020 Aug 12.

Abstract

NMR off-resonance R relaxation dispersion measurements on base carbon and nitrogen nuclei have revealed that wobble G·T/U mismatches in DNA and RNA duplexes exist in dynamic equilibrium with short-lived, low-abundance, and mutagenic Watson-Crick-like conformations. As Watson-Crick-like G·T mismatches have base pairing geometries similar to Watson-Crick base pairs, we hypothesized that they would mimic Watson-Crick base pairs with respect to the sugar-backbone conformation as well. Using off-resonance R measurements targeting the sugar C3' and C4' nuclei, a structure survey, and molecular dynamics simulations, we show that wobble G·T mismatches adopt sugar-backbone conformations that deviate from the canonical Watson-Crick conformation and that transitions toward tautomeric and anionic Watson-Crick-like G·T mismatches restore the canonical Watson-Crick sugar-backbone. These measurements also reveal kinetic isotope effects for tautomerization in DO versus HO, which provide experimental evidence in support of a transition state involving proton transfer. The results provide additional evidence in support of mutagenic Watson-Crick-like G·T mismatches, help rule out alternative inverted wobble conformations in the case of anionic G·T, and also establish sugar carbons as new non-exchangeable probes of this exchange process.

摘要

NMR 去频共振 R 弛豫弥散测量表明,DNA 和 RNA 双链中的摆动 G·T/U 错配与短寿命、低丰度和诱变的 Watson-Crick 样构象处于动态平衡中。由于 Watson-Crick 样 G·T 错配具有与 Watson-Crick 碱基对相似的碱基配对几何形状,我们假设它们在糖骨架构象方面也会类似于 Watson-Crick 碱基对。我们使用针对糖 C3' 和 C4' 核的去频共振 R 测量、结构调查和分子动力学模拟,表明摆动 G·T 错配采用偏离经典 Watson-Crick 构象的糖骨架构象,并且向互变异构和阴离子 Watson-Crick 样 G·T 错配的转变恢复了经典 Watson-Crick 糖骨架。这些测量还揭示了在 DO 与 HO 中互变异构的动力学同位素效应,为涉及质子转移的过渡态提供了实验证据。这些结果为诱变 Watson-Crick 样 G·T 错配提供了额外的证据,有助于排除阴离子 G·T 情况下的替代反向摆动构象,并且还将糖碳确立为该交换过程的新的非交换探针。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd5e/7508749/a55b2093932e/10858_2020_337_Fig1_HTML.jpg

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