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Symmetries by base substitutions in the genetic code predict \(2^\prime\) or \(3^\prime\) aminoacylation of tRNAs

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Publication:2219726
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DOI10.1016/j.jtbi.2007.03.008zbMath1455.92097arXiv0704.0331OpenAlexW2032089866WikidataQ80192407 ScholiaQ80192407MaRDI QIDQ2219726

Jean-Luc Jestin, Christophe Soule

Publication date: 21 January 2021

Published in: Journal of Theoretical Biology (Search for Journal in Brave)

Full work available at URL: https://arxiv.org/abs/0704.0331



Mathematics Subject Classification ID

Biochemistry, molecular biology (92C40) Genetics and epigenetics (92D10)


Related Items (3)

2-adic clustering of the PAM matrix ⋮ Error compensation of tRNA misacylation by codon-anticodon mismatch prevents translational amino acid misinsertion ⋮ On dichotomic classes and bijections of the genetic code



Cites Work

  • A stochastic gene evolution model with time dependent mutations
  • On the 28-gon symmetry inherent in the genetic code intertwined with aminoacyl-tRNA synthetases -- the Lucas series
  • Genetic code from tRNA point of view
  • The case for an error minimizing set of coding amino acids




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