Literature DB >> 24171395

Choline ion interactions with DNA atoms explain unique stabilization of A-T base pairs in DNA duplexes: a microscopic view.

Miki Nakano1, Hisae Tateishi-Karimata, Shigenori Tanaka, Naoki Sugimoto.   

Abstract

Under physiological conditions, G-C base pairs are more stable than A-T base pairs. In a previous study, we showed that in the hydrated ionic liquid of choline dihydrogen phosphate, the stabilities of these base pairs are reversed. In the present study, we elucidated the unique binding interactions of choline ions with DNA atoms from a microscopic viewpoint using molecular dynamics simulations. Three times more choline ions bind to the DNA duplex than sodium ions. Sodium ions bind closely but not stably; in contrast, the choline ions bind through multiple hydrogen bonding networks with DNA atoms stably. The affinity of choline ion for the minor groove of A-T base pairs is more than 2 times that for other groove areas. In the narrow A-T minor groove, choline ion has high affinity for the ribose atoms of thymine. Choline ions also destabilize the formation of hydrogen bonds between G-C base pairs by binding to base atoms preferentially for both of duplex and single-strand DNA, which are associated with the bonds between G-C base pairs. Our new finding will not only lead to better control of DNA stability for use in DNA nanodevices, but also provide new insight into the stability of DNA duplexes under crowding conditions found in living cells.

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Year:  2013        PMID: 24171395     DOI: 10.1021/jp406647b

Source DB:  PubMed          Journal:  J Phys Chem B        ISSN: 1520-5207            Impact factor:   2.991


  14 in total

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6.  Flanking A·T basepairs destabilize the B(∗) conformation of DNA A-tracts.

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Review 7.  Aqueous ionic liquids in comparison with standard co-solutes : Differences and common principles in their interaction with protein and DNA structures.

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Journal:  Biophys Rev       Date:  2018-04-02

8.  Comparable stability of Hoogsteen and Watson-Crick base pairs in ionic liquid choline dihydrogen phosphate.

Authors:  Hisae Tateishi-Karimata; Miki Nakano; Naoki Sugimoto
Journal:  Sci Rep       Date:  2014-01-08       Impact factor: 4.379

9.  Good's buffers as a basis for developing self-buffering and biocompatible ionic liquids for biological research.

Authors:  Mohamed Taha; Francisca A E Silva; Maria V Quental; Sónia P M Ventura; Mara G Freire; João A P Coutinho
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Review 10.  Deep Eutectic Solvents (DESs) and Their Application in Biosensor Development.

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Journal:  Sensors (Basel)       Date:  2021-06-22       Impact factor: 3.576

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