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高通量测定 RNA 三级接触热力学的定量 DMS 化学作图法。

High-throughput determination of RNA tertiary contact thermodynamics by quantitative DMS chemical mapping.

机构信息

Department of Chemistry, University of Nebraska, 639 North 12th St, Lincoln, NE 68588, USA.

出版信息

Nucleic Acids Res. 2024 Sep 9;52(16):9953-9965. doi: 10.1093/nar/gkae633.

Abstract

Structured RNAs often contain long-range tertiary contacts that are critical to their function. Despite the importance of tertiary contacts, methods to measure their thermodynamics are low throughput or require specialized instruments. Here, we introduce a new quantitative chemical mapping method (qMaPseq) to measure Mg2+-induced formation of tertiary contact thermodynamics in a high-throughput manner using standard biochemistry equipment. With qMaPseq, we measured the ΔG of 98 unique tetraloop/tetraloop receptor (TL/TLR) variants in a one-pot reaction. These results agree well with measurements from specialized instruments (R2= 0.64). Furthermore, the DMS reactivity of the TL directly correlates to the stability of the contact (R2= 0.68), the first direct evidence that a single DMS reactivity measurement reports on thermodynamics. Combined with structure prediction, DMS reactivity allowed the development of experimentally accurate 3D models of TLR mutants. These results demonstrate that qMaPseq is broadly accessible, high-throughput and directly links DMS reactivity to thermodynamics.

摘要

结构 RNA 通常含有对其功能至关重要的长程三级接触。尽管三级接触很重要,但测量它们热力学的方法要么通量低,要么需要专门的仪器。在这里,我们引入了一种新的定量化学作图法 (qMaPseq),该方法使用标准生物化学设备以高通量的方式测量 Mg2+诱导的三级接触热力学形成。使用 qMaPseq,我们在一个反应体系中测量了 98 个独特的四链体/四链体受体 (TL/TLR) 变体的ΔG。这些结果与专用仪器的测量结果非常吻合 (R2=0.64)。此外,TL 的 DMS 反应性与接触的稳定性直接相关 (R2=0.68),这是 DMS 反应性直接报告热力学的第一个直接证据。结合结构预测,DMS 反应性使得 TLR 突变体的实验准确 3D 模型得以开发。这些结果表明,qMaPseq 具有广泛的适用性、高通量的特点,并将 DMS 反应性与热力学直接联系起来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d54/11381326/e174b25264be/gkae633figgra1.jpg

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