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Opposite Effects of High-Valent Cations on the Elasticities of DNA and RNA Duplexes Revealed by Magnetic Tweezers

  • Hang Fu
  • , Chen Zhang
  • , Xiao-Wei Qiang
  • , Ya-Jun Yang
  • , Liang Dai
  • , Zhi-Jie Tan*
  • , Xing-Hua Zhang*
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

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Abstract

We report that trivalent cobalt hexammine cations decrease the persistence length, stretching modulus, helical density, and size of plectonemes formed under torque of DNA but increase those of RNA. Divalent magnesium cations, however, decrease the persistence lengths, contour lengths, and sizes of plectonemes while increasing the helical densities of both DNA and RNA. The experimental results are explained by different binding modes of the cations on DNA and RNA in our all-atom molecular dynamics simulations. The significant variations of the helical densities and structures of DNA and RNA duplexes induced by high-valent cations may affect interactions of the duplexes with proteins.
Original languageEnglish
JournalPhysical Review Letters
Volume124
Issue number5
Online published7 Feb 2020
DOIs
Publication statusPublished - 7 Feb 2020

Publisher's Copyright Statement

  • COPYRIGHT TERMS OF DEPOSITED FINAL PUBLISHED VERSION FILE: Fu, H., Zhang, C., Qiang, X.-W., Yang, Y.-J., Dai, L., Tan, Z.-J., & Zhang, X.-H. (2020). Opposite Effects of High-Valent Cations on the Elasticities of DNA and RNA Duplexes Revealed by Magnetic Tweezers. Physical Review Letters, 124(5). https://doi.org/10.1103/PhysRevLett.124.058101 The copyright of this article is owned by American Physical Society.

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