Geometric Patterns for Neighboring Bases Near the Stacked State in Nucleic Acid Strands

被引:3
|
作者
Sedova, Ada [2 ,3 ]
Banavali, Nilesh K. [1 ,2 ]
机构
[1] New York State Dept Hlth, Wadsworth Ctr, Div Genet, Lab Computat & Struct Biol,Biggs Lab, CMS 2008,Empire State Plaza,POB 509, Albany, NY 12201 USA
[2] SUNY Albany, Sch Publ Hlth, Dept Biomed Sci, Albany, NY 12222 USA
[3] Oak Ridge Natl Lab, Sci Comp Grp, Natl Ctr Computat Sci, Bldg 5600,Rm I311,POB 2008, Oak Ridge, TN 37830 USA
关键词
FREE-ENERGY ANALYSIS; THYMINE DIMERIZATION; AQUEOUS-SOLUTION; DRIVING FORCES; DNA; RNA; SEQUENCE; VISUALIZATION; DINUCLEOTIDE; ASSOCIATION;
D O I
10.1021/acs.biochem.6b01101
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Structural variation in base stacking has been analyzed frequently in isolated double helical contexts for nucleic acids, but not as often in nonhelical geometries or in complex biomolecular environments. In this study, conformations of two neighboring bases near their stacked state in any environment are comprehensively characterized for single strand dinucleotide (SSD) nucleic acid crystal structure conformations. An ensemble clustering method is used to identify a reduced set of representative stacking geometries based on pairwise distances between select atoms in consecutive bases, with multiple separable conformational clusters obtained for categories divided by nucleic acid type (DNA/RNA), SSD sequence, stacking face orientation, and the presence or absence of a protein environment. For both DNA and RNA, SSD conformations are observed that are either close to the A-form, or close to the B-form, or intermediate between the two forms, or further away from either form, illustrating the local structural heterogeneity near the stacked state. Among this large variety of distinct conformations, several common stacking patterns are observed between DNA and RNA, and between nucleic acids in isolation or in complex with proteins, suggesting that these might be stable stacking orientations..Noncanonical face/face orientations of the two bases are also observed for neighboring bases in the same strand, but their frequency is much lower, with multiple SSD sequences across categories showing no occurrences of such unusual stacked conformations. The resulting reduced set of stacking geometries is directly useful for stacking-energy comparisons between empirical force fields, prediction of plausible localized variations in single-strand structures near their canonical states, and identification of analogous stacking patterns in newly solved nucleic acid containing structures.
引用
收藏
页码:1426 / 1443
页数:18
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