Literature DB >> 15139820

The thermodynamics of DNA structural motifs.

John SantaLucia1, Donald Hicks.   

Abstract

DNA secondary structure plays an important role in biology, genotyping diagnostics, a variety of molecular biology techniques, in vitro-selected DNA catalysts, nanotechnology, and DNA-based computing. Accurate prediction of DNA secondary structure and hybridization using dynamic programming algorithms requires a database of thermodynamic parameters for several motifs including Watson-Crick base pairs, internal mismatches, terminal mismatches, terminal dangling ends, hairpins, bulges, internal loops, and multibranched loops. To make the database useful for predictions under a variety of salt conditions, empirical equations for monovalent and magnesium dependence of thermodynamics have been developed. Bimolecular hybridization is often inhibited by competing unimolecular folding of a target or probe DNA. Powerful numerical methods have been developed to solve multistate-coupled equilibria in bimolecular and higher-order complexes. This review presents the current parameter set available for making accurate DNA structure predictions and also points to future directions for improvement.

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Year:  2004        PMID: 15139820     DOI: 10.1146/annurev.biophys.32.110601.141800

Source DB:  PubMed          Journal:  Annu Rev Biophys Biomol Struct        ISSN: 1056-8700


  355 in total

1.  Liquid crystal self-assembly of random-sequence DNA oligomers.

Authors:  Tommaso Bellini; Giuliano Zanchetta; Tommaso P Fraccia; Roberto Cerbino; Ethan Tsai; Gregory P Smith; Mark J Moran; David M Walba; Noel A Clark
Journal:  Proc Natl Acad Sci U S A       Date:  2012-01-10       Impact factor: 11.205

2.  Structure and stability of RNA/RNA kissing complex: with application to HIV dimerization initiation signal.

Authors:  Song Cao; Shi-Jie Chen
Journal:  RNA       Date:  2011-10-25       Impact factor: 4.942

3.  Development and characterization of a highly specific and sensitive SYBR green reverse transcriptase PCR assay for detection of the 2009 pandemic H1N1 influenza virus on the basis of sequence signatures.

Authors:  Rafael A Medina; Mark Rojas; Astrid Tuin; Stephen Huff; Marcela Ferres; Constanza Martinez-Valdebenito; Paula Godoy; Adolfo García-Sastre; Yuriy Fofanov; John SantaLucia
Journal:  J Clin Microbiol       Date:  2010-11-17       Impact factor: 5.948

4.  Ligation of water to magnesium chelates of biological importance.

Authors:  Dorota Rutkowska-Zbik; Małgorzata Witko; Leszek Fiedor
Journal:  J Mol Model       Date:  2012-05-29       Impact factor: 1.810

5.  Structural studies of a trinucleotide repeat sequence using 2-aminopurine.

Authors:  Natalya N Degtyareva; Michael J Reddish; Bidisha Sengupta; Jeffrey T Petty
Journal:  Biochemistry       Date:  2009-03-24       Impact factor: 3.162

6.  DNA mismatch binding and antiproliferative activity of rhodium metalloinsertors.

Authors:  Russell J Ernst; Hang Song; Jacqueline K Barton
Journal:  J Am Chem Soc       Date:  2009-02-18       Impact factor: 15.419

7.  Long-range correlations in the mechanics of small DNA circles under topological stress revealed by multi-scale simulation.

Authors:  Thana Sutthibutpong; Christian Matek; Craig Benham; Gabriel G Slade; Agnes Noy; Charles Laughton; Jonathan P K Doye; Ard A Louis; Sarah A Harris
Journal:  Nucleic Acids Res       Date:  2016-09-22       Impact factor: 16.971

8.  Relating DNA base-pairing in aqueous media to DNA polymerase fidelity.

Authors:  John Petruska; Myron F Goodman
Journal:  Nat Rev Chem       Date:  2017-09-06       Impact factor: 34.035

9.  Translation of DNA into a library of 13,000 synthetic small-molecule macrocycles suitable for in vitro selection.

Authors:  Brian N Tse; Thomas M Snyder; Yinghua Shen; David R Liu
Journal:  J Am Chem Soc       Date:  2008-10-29       Impact factor: 15.419

10.  Thermodynamic basis for engineering high-affinity, high-specificity binding-induced DNA clamp nanoswitches.

Authors:  Andrea Idili; Kevin W Plaxco; Alexis Vallée-Bélisle; Francesco Ricci
Journal:  ACS Nano       Date:  2013-11-20       Impact factor: 15.881

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