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Effects and limitations of a nucleobase-driven backmapping procedure for nucleic acids using steered molecular dynamics

Poblete, Simón
•
Bottaro, Sandro
•
Bussi, Giovanni
2018
  • journal article

Periodico
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS
Abstract
Coarse-grained models can be of great help to address the problem of structure prediction in nucleic acids. On one hand they can make the prediction more efficient, while on the other hand they can also help to identify the essential degrees of freedom and interactions for the description of a number of structures. With the aim to provide an all-atom representation in an explicit solvent to the predictions of our SPlit and conQueR (SPQR) coarse-grained model of RNA, we recently introduced a backmapping procedure which enforces the predicted structure into an atomistic one by means of steered molecular dynamics. These simulations minimize the ERMSD, a particular metric which deals exclusively with the relative arrangement of nucleobases, between the atomistic representation and the target structure. In this paper, we explore the effects of this approach on the resulting interaction networks and backbone conformations by applying it on a set of fragments using as a target their native structure. We find that the geometry of the target structures can be reliably recovered, with limitations in the regions with unpaired bases such as bulges. In addition, we observe that the folding pathway can also change depending on the parameters used in the definition of the ERMSD and the use of other metrics such as the RMSD.
DOI
10.1016/j.bbrc.2017.12.057
WOS
WOS:000430035400013
Archivio
http://hdl.handle.net/20.500.11767/68116
info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-85039039956
http://www.sciencedirect.com/science/journal/0006291X
Diritti
open access
Soggetti
  • Backmapping

  • Coarse-graining

  • RNA

  • Steered molecular dyn...

  • Biophysics

  • Biochemistry

  • Molecular Biology

  • Cell Biology

  • Settore FIS/03 - Fisi...

Scopus© citazioni
5
Data di acquisizione
Jun 14, 2022
Vedi dettagli
Web of Science© citazioni
7
Data di acquisizione
Mar 28, 2024
Visualizzazioni
5
Data di acquisizione
Apr 19, 2024
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