
Imposing a minimum principle in the framework of the so called crystal basis model of the genetic code, we determine the structure of the minimum set of anticodons which allows the translational-transcription for animal mitochondrial code. The results are in very good agreement with the observed anticodons.
13 pages, 6 Tables, to appear in Biosystems
Genomics (q-bio.GN), Genetic code; Codon; Anticodon; Crystal basis model, Models, Genetic, Transcription, Genetic, [PHYS.HTHE]Physics [physics]/High Energy Physics - Theory [hep-th], Genetic code, Quantitative Biology - Quantitative Methods, Mitochondria, Crystal basis model, RNA, Transfer, Genetic Code, Protein Biosynthesis, FOS: Biological sciences, Anticodon, Animals, Quantitative Biology - Genomics, Codon, Quantitative Methods (q-bio.QM)
Genomics (q-bio.GN), Genetic code; Codon; Anticodon; Crystal basis model, Models, Genetic, Transcription, Genetic, [PHYS.HTHE]Physics [physics]/High Energy Physics - Theory [hep-th], Genetic code, Quantitative Biology - Quantitative Methods, Mitochondria, Crystal basis model, RNA, Transfer, Genetic Code, Protein Biosynthesis, FOS: Biological sciences, Anticodon, Animals, Quantitative Biology - Genomics, Codon, Quantitative Methods (q-bio.QM)
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