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首页|The ‘hidden side’ of spin labeled oligonucleotides: Molecular Dynamics study focusing on the EPR-silent components of base pairing

The ‘hidden side’ of spin labeled oligonucleotides: Molecular Dynamics study focusing on the EPR-silent components of base pairing

The ‘hidden side’ of spin labeled oligonucleotides: Molecular Dynamics study focusing on the EPR-silent components of base pairing

来源:bioRxiv_logobioRxiv
英文摘要

Abstract Nitroxide labels are combined with nucleic acid structures and studied using electron paramagnetic resonance experiments (EPR). As X-ray/NMR structures are unavailable with the nitroxide labels, detailed residue level information, down to atomic resolution, about the effect of these nitroxide labels on local RNA structures is currently lacking. This information is critical to evaluate the choice of spin label. In this study, we compare and contrast the effect of TEMPO-based (NT) and rigid spin (?) labels (in both 2’-O methylated and not-methylated forms) on RNA duplexes. We also investigate sequence-dependent effects of NT label on RNA duplex along with the more complex G-quadruplex RNA. Distances measured from molecular dynamics simulations between the two spin labels are in agreement with the EPR experimental data. To understand the effect of labeled oligonucleotides on the structure, we studied the local base pair geometries and global structure in comparison with the unlabeled structures. Based on the structural analysis, we can conclude that TEMPO-based and ? labels do not significantly perturb the base pair arrangements of the native oligonucleotide. When experimental structures for the spin labelled DNA/RNA molecules are not available, general framework offered by the current study can be used to provide information critical to the choice of spin labels to facilitate future EPR studies. Graphical abstractbiorxiv;537324v2/UFIG1F1ufig1

Dantu Sarath Chandra、Sicoli Giuseppe、H?bartner Claudia

Theoretical & Computational Biophysics Department, Max Planck Institute for Biophysical Chemistry||Department of Computer Science¨CSynthetic Biology Theme, Brunel University LondonResearch group Electron Paramagnetic Resonance, Max Planck Institute for Biophysical Chemistry||Laboratoire de Spectrochimie Infrarouge et Raman (LASIR) Batiment C5 ¨C UMR CNRS 8516 Universit¨| de LilleResearch group Nucleic Acid Chemistry, Max Planck Institute for Biophysical Chemistry||Institut f¨1r Organische Chemie, Universit?t W¨1rzburg

10.1101/537324

生物物理学分子生物学生物科学研究方法、生物科学研究技术

Dantu Sarath Chandra,Sicoli Giuseppe,H?bartner Claudia.The ‘hidden side’ of spin labeled oligonucleotides: Molecular Dynamics study focusing on the EPR-silent components of base pairing[EB/OL].(2025-03-28)[2025-04-26].https://www.biorxiv.org/content/10.1101/537324.点此复制

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