Salt-Dependent Folding Energy Landscape of RNA Three-Way Junction

被引:13
作者
Chen, Gengsheng
Tan, Zhi-Jie
Chen, Shi-Jie [1 ]
机构
[1] Univ Missouri, Dept Phys & Astron, Columbia, MO 65211 USA
基金
美国国家科学基金会; 美国国家卫生研究院;
关键词
POISSON-BOLTZMANN THEORY; NUCLEIC-ACID; COUNTERION CONDENSATION; CONFORMATIONAL-CHANGES; TETRAHYMENA RIBOZYME; HELIX STABILITY; ION ATMOSPHERE; RIBOSOMAL-RNA; MG2+ BINDING; DNA;
D O I
10.1016/j.bpj.2009.09.057
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
RNAs are highly negatively charged chain molecules. Metal ions play a crucial role in RNA folding stability and conformational changes. In this work, we employ the recently developed tightly bound ion (TBI) model, which accounts for the correlation between ions and the fluctuation of ion distributions, to investigate the ion-dependent free energy landscape for the three-way RNA junction in a 16S rRNA domain. The predicted electrostatic free energy landscape suggests that 1), ion-mediated electrostatic interactions cause an ensemble of unfolded conformations narrowly populated around the maximally extended structure; and 2), Mg2+ ion-induced correlation effects help bring the helices to the folded state. Nonelectrostatic interactions, such as noncanonical interactions within the junctions and between junctions and helix stems, might further limit the conformational diversity of the unfolded state, resulting in a more ordered unfolded state than the one predicted from the electrostatic effect. Moreover, the folded state is predominantly stabilized by the coaxial stacking force. The TBI-predicted folding stability agrees well with the experimental measurements for the different Na+ and Mg2+ ion concentrations. For Mg2+ solutions, the TBI model, which accounts for the Mg2+ ion correlation effect, gives more improved predictions than the Poisson-Boltzmann theory, which tends to underestimate the role of Mg2+ in stabilizing the folded structure. Detailed control tests indicate that the dominant ion correlation effect comes from the charge-charge Coulombic correlation rather than the size (excluded volume) correlation between the ions. Furthermore, the model gives quantitative predictions for the ion size effect in the folding energy landscape and folding cooperativity.
引用
收藏
页码:111 / 120
页数:10
相关论文
共 54 条
[1]  
ALEX S, 2007, ADV CHEM PHYS, V139, P139
[2]  
ANDERSON CF, 1995, ANNU REV PHYS CHEM, V46, P657, DOI 10.1146/annurev.physchem.46.1.657
[3]   Spatial distribution of competing ions around DNA in solution [J].
Andresen, K ;
Das, R ;
Park, HY ;
Smith, H ;
Kwok, LW ;
Lamb, JS ;
Kirkland, EJ ;
Herschlag, D ;
Finkelstein, KD ;
Pollack, L .
PHYSICAL REVIEW LETTERS, 2004, 93 (24)
[4]   Probing counterion modulated repulsion and attraction between nucleic acid duplexes in solution [J].
Bai, Y ;
Das, R ;
Millett, IS ;
Herschlag, D ;
Doniach, S .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2005, 102 (04) :1035-1040
[5]   Critical assessment of nucleic acid electrostatics via experimental and computational investigation of an unfolded state ensemble [J].
Bai, Yu ;
Chu, Vincent B. ;
Lipfert, Jan ;
Pande, Vijay S. ;
Herschlag, Daniel ;
Doniach, Sebastian .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2008, 130 (37) :12334-12341
[6]   Quantitative and comprehensive decomposition of the ion atmosphere around nucleic acids [J].
Bai, Yu ;
Greenfeld, Max ;
Travers, Kevin J. ;
Chu, Vincent B. ;
Lipfert, Jan ;
Doniach, Sebastian ;
Herschlag, Daniel .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2007, 129 (48) :14981-14988
[7]   Effects of polyvalent cations on the folding of an rRNA three-way junction and binding of ribosomal protein S15 [J].
Batey, RT ;
Williamson, JR .
RNA, 1998, 4 (08) :984-997
[8]  
Bloomfield V., 2000, NUCL ACIDS STRUCTURE
[9]   Single-molecule transition-state analysis of RNA folding [J].
Bokinsky, G ;
Rueda, D ;
Misra, VK ;
Rhodes, MM ;
Gordus, A ;
Babcock, HP ;
Walter, NG ;
Zhuang, XW .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2003, 100 (16) :9302-9307
[10]   A new outer boundary formulation and energy corrections for the nonlinear Poisson-Boltzmann equation [J].
Boschitsch, Alexander H. ;
Fenley, Marcia O. .
JOURNAL OF COMPUTATIONAL CHEMISTRY, 2007, 28 (05) :909-921