Classification of RNA backbone conformation into rotamers using 13C′ chemical shifts: How far we can go?

Author:

Icazatti A. A.,Loyola J.M.ORCID,Szleifer I.,Vila J.A.ORCID,Martin O. A.ORCID

Abstract

ABSTRACTThe conformational space of the ribose–phosphate backbone is very complex as is defined in terms of six torsional angles. To help delimit the RNA backbone conformational preferences 46 rotamers have been defined in terms of the these torsional angles. In the present work, we use the ribose experimental and theoretical 13C′ chemical shifts data and machine learning methods to classify RNA backbone conformations into rotamers and families of rotamers. We show to what extent the use of experimental 13C′ chemical shifts can be used to identify rotamers and discuss some problem with the theoretical computations of 13C′ chemical shifts.

Publisher

Cold Spring Harbor Laboratory

Reference21 articles.

1. Understanding the transcriptome through RNA structure

2. Non–coding RNA genes and the modern RNA world

3. RNA backbone: Consensus all-angle conformers and modular string nomenclature (an RNA Ontology Consortium contribution)

4. Prediction of RNA 1H and 13C Chemical Shifts: A Structure Based Approach;J Phys Chem B,2013

5. Quantum-Mechanics-Derived 13Calpha Chemical Shift Server (CheShift) for Protein Structure Validation;Proceedings of the National Academy of Sciences of the United States of America,2009

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