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Schematic for efficient computation of GC, GC3, and AT3 bias spectra of genome.


ABSTRACT: Selection of synonymous codons for an amino acid is biased in protein translation process. This biased selection causes repetition of synonymous codons in structural parts of genome that stands for high N/3 peaks in DNA spectrum. Period-3 spectral property is utilized here to produce a 3-phase network model based on polyphase filterbank concepts for derivation of codon bias spectra (CBS). Modification of parameters in this model can produce GC, GC3, and AT3 bias spectra. Complete schematic in LabVIEW platform is presented here for efficient and parallel computation of GC, GC3, and AT3 bias spectra of genomes alongwith results of CBS patterns. We have performed the correlation coefficient analysis of GC, GC3, and AT3 bias spectra with codon bias patterns of CBS for biological and statistical significance of this model.

SUBMITTER: Rizvi AZ 

PROVIDER: S-EPMC3283890 | biostudies-other | 2012

REPOSITORIES: biostudies-other

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Schematic for efficient computation of GC, GC3, and AT3 bias spectra of genome.

Rizvi Ahsan Z AZ   Venu Gopal T T   Bhattacharya C C  

Bioinformation 20120203 3


Selection of synonymous codons for an amino acid is biased in protein translation process. This biased selection causes repetition of synonymous codons in structural parts of genome that stands for high N/3 peaks in DNA spectrum. Period-3 spectral property is utilized here to produce a 3-phase network model based on polyphase filterbank concepts for derivation of codon bias spectra (CBS). Modification of parameters in this model can produce GC, GC3, and AT3 bias spectra. Complete schematic in La  ...[more]

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