Literature DB >> 29694858

Competitive Binding of Mg2+ and Na+ Ions to Nucleic Acids: From Helices to Tertiary Structures.

Kun Xi1, Feng-Hua Wang2, Gui Xiong1, Zhong-Liang Zhang1, Zhi-Jie Tan3.   

Abstract

Nucleic acids generally reside in cellular aqueous solutions with mixed divalent/monovalent ions, and the competitive binding of divalent and monovalent ions is critical to the structures of nucleic acids because of their polyanionic nature. In this work, we first proposed a general and effective method for simulating a nucleic acid in mixed divalent/monovalent ion solutions with desired bulk ion concentrations via molecular dynamics (MD) simulations and investigated the competitive binding of Mg2+/Na+ ions to various nucleic acids by all-atom MD simulations. The extensive MD-based examinations show that single MD simulations conducted using the proposed method can yield desired bulk divalent/monovalent ion concentrations for various nucleic acids, including RNA tertiary structures. Our comprehensive analyses show that the global binding of Mg2+/Na+ to a nucleic acid is mainly dependent on its structure compactness, as well as Mg2+/Na+ concentrations, rather than the specific structure of the nucleic acid. Specifically, the relative global binding of Mg2+ over Na+ is stronger for a nucleic acid with higher effective surface charge density and higher relative Mg2+/Na+ concentrations. Furthermore, the local binding of Mg2+/Na+ to a phosphate of a nucleic acid mainly depends on the local phosphate density in addition to Mg2+/Na+ concentrations.
Copyright © 2018 Biophysical Society. Published by Elsevier Inc. All rights reserved.

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Year:  2018        PMID: 29694858      PMCID: PMC5936997          DOI: 10.1016/j.bpj.2018.03.001

Source DB:  PubMed          Journal:  Biophys J        ISSN: 0006-3495            Impact factor:   4.033


  92 in total

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Journal:  Chemphyschem       Date:  2010-07-12       Impact factor: 3.102

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6.  Salt contribution to RNA tertiary structure folding stability.

Authors:  Zhi-Jie Tan; Shi-Jie Chen
Journal:  Biophys J       Date:  2011-07-06       Impact factor: 4.033

7.  Competitive binding of Mg2+, Ca2+, Na+, and K+ ions to DNA in oriented DNA fibers: experimental and Monte Carlo simulation results.

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  16 in total

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5.  Electrophoretic Mobility of DNA in Solutions of High Ionic Strength.

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6.  Contact pairs of RNA with magnesium ions-electrostatics beyond the Poisson-Boltzmann equation.

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Journal:  Biophys J       Date:  2021-10-27       Impact factor: 4.033

7.  Ion counting demonstrates a high electrostatic field generated by the nucleosome.

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8.  What is the best reference state for building statistical potentials in RNA 3D structure evaluation?

Authors:  Ya-Lan Tan; Chen-Jie Feng; Lei Jin; Ya-Zhou Shi; Wenbing Zhang; Zhi-Jie Tan
Journal:  RNA       Date:  2019-04-17       Impact factor: 4.942

9.  Structure folding of RNA kissing complexes in salt solutions: predicting 3D structure, stability, and folding pathway.

Authors:  Lei Jin; Ya-Lan Tan; Yao Wu; Xunxun Wang; Ya-Zhou Shi; Zhi-Jie Tan
Journal:  RNA       Date:  2019-08-07       Impact factor: 4.942

10.  Salt effect on thermodynamics and kinetics of a single RNA base pair.

Authors:  Yujie Wang; Taigang Liu; Ting Yu; Zhi-Jie Tan; Wenbing Zhang
Journal:  RNA       Date:  2020-01-27       Impact factor: 4.942

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