Contribution of Counterion Entropy to the Salt-Induced Transition Between B-DNA and Z-DNA

  • Lee, Youn-Kyoung
  • Lee, Juyong
  • Choi, Jung Hyun
  • Seok, Chaok
Citations

WEB OF SCIENCE

2
Citations

SCOPUS

3

초록

Formation of Z-DNA, a left-handed double helix, from B-DNA, the canonical right-handed double helix, occurs during important biological processes such as gene expression and DNA transcription. Such B-Z transitions can also be induced by high salt concentration in vitro, but the changes in the relative stability of B-DNA and Z-DNA with salt concentration have not been fully explained despite numerous attempts. For example, electrostatic effects alone could not account for salt-induced B-Z transitions in previous studies. In this paper, we propose that the B-Z transition can be explained if counterion entropy is considered along with the electrostatic interactions. This can be achieved by conducting all-atom, explicit-solvent MD simulations followed by MM-PBSA and molecular DFT calculations. Our MD simulations show that counterions tend to bind at specific sites in B-DNA and Z-DNA, and that more ions cluster near Z-DNA than near B-DNA. Moreover, the difference in counterion ordering near B-DNA and Z-DNA is larger at a low salt concentration than at a high concentration. The results imply that the exclusion of counterions by Z-DNA-binding proteins may facilitate Z-DNA formation under physiological conditions.

키워드

Z-DNAB-Z transitionMM-PBSAClassical density functional theoryCounterion entropyMOLECULAR-DYNAMICSELECTROSTATICSSTABILIZATIONFLEXIBILITYGROOVES
제목
Contribution of Counterion Entropy to the Salt-Induced Transition Between B-DNA and Z-DNA
저자
Lee, Youn-KyoungLee, JuyongChoi, Jung HyunSeok, Chaok
DOI
10.5012/bkcs.2012.33.11.3719
발행일
2012-11-20
유형
Article
저널명
Bulletin of the Korean Chemical Society
33
11
페이지
3719 ~ 3726