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Bioactive peptide design using the Resonant Recognition Model

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posted on 2024-11-23, 07:06 authored by Irena CosicIrena Cosic, Elena PirogovaElena Pirogova
With a large number of DNA and protein sequences already known, the crucial question is to find out how the biological function of these macromolecules is "written" in the sequence of nucleotides or amino acids. Biological processes in any living organism are based on selective interactions between particular bio-molecules, mostly proteins. The rules governing the coding of a protein's biological function, i.e. its ability to selectively interact with other molecules, are still not elucidated. In addition, with the rapid accumulation of databases of protein primary structures, there is an urgent need for theoretical approaches that are capable of analysing protein structure-function relationships. The Resonant Recognition Model (RRM) [1,2] is one attempt to identify the selectivity of protein interactions within the amino acid sequence. The RRM [1,2] is a physico-mathematical approach that interprets protein sequence linear information using digital signal processing methods. In the RRM the protein primary structure is represented as a numerical series by assigning to each amino acid in the sequence a physical parameter value relevant to the protein's biological activity. The RRM concept is based on the finding that there is a significant correlation between spectra of the numerical presentation of amino acids and their biological activity. Once the characteristic frequency for a particular protein function/interaction is identified, it is possible then to utilize the RRM approach to predict the amino acids in the protein sequence, which predominantly contribute to this frequency and thus, to the observed function, as well as to design de novo peptides having the desired periodicities.

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    ISSN - Is published in 17534631

Journal

Nonlinear Biomedical Physics

Volume

1

Issue

7

Start page

1

End page

17

Total pages

17

Publisher

BioMed Central

Place published

London, UK

Language

English

Copyright

© 2007 Cosic and Pirogova; licensee BioMed Central Ltd.

Former Identifier

2006007443

Esploro creation date

2020-06-22

Fedora creation date

2009-11-05

Open access

  • Yes

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