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Nearest-neighbor thermodynamics of deoxyinosine pairs in DNA duplexes

Nearest-neighbor thermodynamic parameters of the ‘universal pairing base’ deoxyinosine were determined for the pairs I·C, I·A, I·T, I·G and I·I adjacent to G·C and A·T pairs. Ultraviolet absorbance melting curves were measured and non-linear regression performed on 84 oligonucleotide duplexes with 9...

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Detalles Bibliográficos
Autores principales: Watkins, Norman E., SantaLucia, John
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2005
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1277807/
https://www.ncbi.nlm.nih.gov/pubmed/16264087
http://dx.doi.org/10.1093/nar/gki918
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author Watkins, Norman E.
SantaLucia, John
author_facet Watkins, Norman E.
SantaLucia, John
author_sort Watkins, Norman E.
collection PubMed
description Nearest-neighbor thermodynamic parameters of the ‘universal pairing base’ deoxyinosine were determined for the pairs I·C, I·A, I·T, I·G and I·I adjacent to G·C and A·T pairs. Ultraviolet absorbance melting curves were measured and non-linear regression performed on 84 oligonucleotide duplexes with 9 or 12 bp lengths. These data were combined with data for 13 inosine containing duplexes from the literature. Multiple linear regression was used to solve for the 32 nearest-neighbor unknowns. The parameters predict the T(m) for all sequences within 1.2°C on average. The general trend in decreasing stability is I·C > I·A > I·T ≈ I· G > I·I. The stability trend for the base pair 5′ of the I·X pair is G·C > C·G > A·T > T·A. The stability trend for the base pair 3′ of I·X is the same. These trends indicate a complex interplay between H-bonding, nearest-neighbor stacking, and mismatch geometry. A survey of 14 tandem inosine pairs and 8 tandem self-complementary inosine pairs is also provided. These results may be used in the design of degenerate PCR primers and for degenerate microarray probes.
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spelling pubmed-12778072005-11-04 Nearest-neighbor thermodynamics of deoxyinosine pairs in DNA duplexes Watkins, Norman E. SantaLucia, John Nucleic Acids Res Article Nearest-neighbor thermodynamic parameters of the ‘universal pairing base’ deoxyinosine were determined for the pairs I·C, I·A, I·T, I·G and I·I adjacent to G·C and A·T pairs. Ultraviolet absorbance melting curves were measured and non-linear regression performed on 84 oligonucleotide duplexes with 9 or 12 bp lengths. These data were combined with data for 13 inosine containing duplexes from the literature. Multiple linear regression was used to solve for the 32 nearest-neighbor unknowns. The parameters predict the T(m) for all sequences within 1.2°C on average. The general trend in decreasing stability is I·C > I·A > I·T ≈ I· G > I·I. The stability trend for the base pair 5′ of the I·X pair is G·C > C·G > A·T > T·A. The stability trend for the base pair 3′ of I·X is the same. These trends indicate a complex interplay between H-bonding, nearest-neighbor stacking, and mismatch geometry. A survey of 14 tandem inosine pairs and 8 tandem self-complementary inosine pairs is also provided. These results may be used in the design of degenerate PCR primers and for degenerate microarray probes. Oxford University Press 2005 2005-11-01 /pmc/articles/PMC1277807/ /pubmed/16264087 http://dx.doi.org/10.1093/nar/gki918 Text en © The Author 2005. Published by Oxford University Press. All rights reserved
spellingShingle Article
Watkins, Norman E.
SantaLucia, John
Nearest-neighbor thermodynamics of deoxyinosine pairs in DNA duplexes
title Nearest-neighbor thermodynamics of deoxyinosine pairs in DNA duplexes
title_full Nearest-neighbor thermodynamics of deoxyinosine pairs in DNA duplexes
title_fullStr Nearest-neighbor thermodynamics of deoxyinosine pairs in DNA duplexes
title_full_unstemmed Nearest-neighbor thermodynamics of deoxyinosine pairs in DNA duplexes
title_short Nearest-neighbor thermodynamics of deoxyinosine pairs in DNA duplexes
title_sort nearest-neighbor thermodynamics of deoxyinosine pairs in dna duplexes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1277807/
https://www.ncbi.nlm.nih.gov/pubmed/16264087
http://dx.doi.org/10.1093/nar/gki918
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