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September 18, 20250 citationsOpen Access

DNA Twist at High Alkaline Ion Concentrations: Evidence against C-Form DNA in Solution

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KSKoen R StormCWChristian WiebelerSCSergio Cruz-León

Key Points

  • The twist of DNA remains stable and does not transition to C-form despite high salt concentrations.
  • At concentrations above 3 M, DNA twist plateaus, showing an increase of approximately 0.8 degrees/bp compared to physiological salt levels.
  • Molecular dynamics simulations show that the B-form of DNA remains stable while C-form structures rapidly convert back to B-form under high salt conditions.
  • Changes in DNA twist are specific to the type of salt used, demonstrating ion-specific behavior beyond 1 M concentrations.

Abstract

DNA is highly negatively charged, making its structure strongly dependent on the ionic environment. DNA twist -a central DNA property- varies with ion concentration and identity. Prior studies have focused on salt concentrations below 1 M and it is unclear whether twist trends persist at higher concentrations. It has been proposed that at high salt, DNA transitions from its canonical B-form to C-form, originally observed by fiber diffraction. Here, we use single-molecule magnetic tweezers to measure DNA twist in high concentrations of LiCl, NaCl, KCl, and CsCl. For all salts, twist initially increases approximately as ~salt¹/2, but plateaus above 3 M. LiCl causes the largest twist increase, by ~0. 8 degrees/bp compared to physiological salt, still far below the suggested C-form values of 2-3 degrees/bp. We perform all-atom molecular dynamics simulations for DNA in LiCl solutions with different force fields. For parmbsc1, we observe good agreement with experiments when ion activities are taken into account. We find that simulations initiated in the C-form rapidly convert to B-form, while the B-form remains stable. Our results demonstrate ion-specific, systematic changes in DNA twist beyond 1 M salt, but do not support a transition to the C-form for DNA, even at very high salt concentrations.

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Cite This Study

Storm et al. (2025) studied this question.

synapsesocial.com/papers/68d463e231b076d99fa62f13https://doi.org/10.1101/2025.09.15.676196
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1DNA twist at high alkali ion concentrations: evidence against C-form DNA in solution2026 · 4 citations
  2. 2Properties of DNA in concentrated aqueous solutions of LiCl suggest transition to C-DNA2024
  3. 3Ultra-Short DNA Fragments Undergo A-to-B Conformational Transitions Revealed by FTIR Spectroscopy2026
  4. 4Twist dominates bending in the liquid crystal organization of bacteriophage DNA2025
  5. 5Inferring DNA kinkability from biased MD simulations2025