| Literature DB >> 25260586 |
Marco Pasi1, John H Maddocks2, David Beveridge3, Thomas C Bishop4, David A Case5, Thomas Cheatham6, Pablo D Dans7, B Jayaram8, Filip Lankas9, Charles Laughton10, Jonathan Mitchell1, Roman Osman11, Modesto Orozco7, Alberto Pérez7, Daiva Petkevičiūtė1, Nada Spackova12, Jiri Sponer13, Krystyna Zakrzewska14, Richard Lavery14.
Abstract
We present the results of microsecond molecular dynamics simulations carried out by the ABC group of laboratories on a set of B-DNA oligomers containing the 136 distinct tetranucleotide base sequences. We demonstrate that the resulting trajectories have extensively sampled the conformational space accessible to B-DNA at room temperature. We confirm that base sequence effects depend strongly not only on the specific base pair step, but also on the specific base pairs that flank each step. Beyond sequence effects on average helical parameters and conformational fluctuations, we also identify tetranucleotide sequences that oscillate between several distinct conformational substates. By analyzing the conformation of the phosphodiester backbones, it is possible to understand for which sequences these substates will arise, and what impact they will have on specific helical parameters.Entities:
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Year: 2014 PMID: 25260586 PMCID: PMC4231739 DOI: 10.1093/nar/gku855
Source DB: PubMed Journal: Nucleic Acids Res ISSN: 0305-1048 Impact factor: 16.971