Sun Li-Zhen, Zhou Yuanzhe, Chen Shi-Jie
Department of Applied Physics, Zhejiang University of Technology, Hangzhou 310023, China.
Department of Physics, Department of Biochemistry, and Informatics Institute, University of Missouri, Columbia, Missouri 65211, United States.
ACS Omega. 2019 Aug 5;4(8):13435-13446. doi: 10.1021/acsomega.9b01689. eCollection 2019 Aug 20.
Ion correlation and fluctuation can play a potentially significant role in metal ion-nucleic acid interactions. Previous studies have focused on the effects for multivalent cations. However, the correlation and fluctuation effects can be important also for monovalent cations around the nucleic acid surface. Here, we report a model, gMCTBI, that can explicitly treat discrete distributions of both monovalent and multivalent cations and can account for the correlation and fluctuation effects for the cations in the solution. The gMCTBI model enables investigation of the global ion binding properties as well as the detailed discrete distributions of the bound ions. Accounting for the ion correlation effect for monovalent ions can lead to more accurate predictions, especially in a mixed monovalent and multivalent salt solution, for the number and location of the bound ions. Furthermore, although the monovalent ion-mediated correlation does not show a significant effect on the number of bound ions, the correlation may enhance the accumulation of monovalent ions near the nucleic acid surface and hence affect the ion distribution. The study further reveals novel ion correlation-induced effects in the competition between the different cations around nucleic acids.
离子的相关性和涨落可能在金属离子与核酸的相互作用中发挥潜在的重要作用。以往的研究主要集中在多价阳离子的影响上。然而,对于核酸表面周围的单价阳离子,相关性和涨落效应也可能很重要。在此,我们报告了一个模型,即广义模态耦合理论生物离子模型(gMCTBI),它能够明确处理单价和多价阳离子的离散分布,并能考虑溶液中阳离子的相关性和涨落效应。gMCTBI模型能够研究全局离子结合特性以及结合离子的详细离散分布。考虑单价离子的离子相关效应可以得出更准确的预测,特别是在单价和多价混合盐溶液中,对于结合离子的数量和位置。此外,尽管单价离子介导的相关性对结合离子的数量没有显著影响,但这种相关性可能会增强单价离子在核酸表面附近的积累,从而影响离子分布。该研究进一步揭示了核酸周围不同阳离子之间竞争中由离子相关性诱导的新效应。