DNA Binding Site Characterization by Means of Rényi Entropy Measures on Nucleotide Transitions

Author

Perera, Alexandre

Vallverdú, Montserrat

Clarià Sancho, Francisco

Soria, José Manuel

Caminal Magrans, Pere

Publication date

2016-07-12T11:32:32Z

2025-01-01

2008



Abstract

—In this work, parametric information-theory measures for the characterization of binding sites in DNA are extended with the use of transitional probabilities on the sequence. We propose the use of parametric uncertainty measures such as Rényi entropies obtained from the transition probabilities for the study of the binding sites, in addition to nucleotide frequency-based Rényi measures. Results are reported in this work comparing transition frequencies (i.e., dinucleotides) and base frequencies for Shannon and parametric Rényi entropies for a number of binding sites found in E. Coli, , and T7 organisms. We observe that the information provided by both approaches is not redundant. Furthermore, under the presence of noise in the binding site matrix we observe overall improved robustness of nucleotide transition-based algorithms when compared with nucleotide frequency-based method.


This work was supported by the Spanish Ministerio de Educación y Ciencia under the Ramón y Cajal Program and TEC2007-63637/TCM. Asterisk indicates corresponding author.

Document Type

article
publishedVersion

Language

English

Subjects and keywords

Binding site; Rényi entropy; Biological cells; Genetics

Publisher

Institute of Electrical and Electronics Engineers

Related items

MIECI/PN2004-2007/TEC2007-63637

Reproducció del document publicat a https://doi.org/10.1109/TNB.2008.2000744

IEEE Transactions on NanoBioscience, 2008, vol. 7, núm. 2, p. 133-141

Rights

(c) IEEE, 2008

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