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[Enzyme formation and the genetic code].
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Polynucleotide synthesis and the genetic code.
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[Antinomias in the axiomatization of genetic coding by triplets].
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Polynucleotide synthesis and the genetic code.
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[Genetic code of lambda bacteriophage].
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[A new mathematical model of the genetic code: the prewobble hypothesis].
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[Questioning the universality of the genetic code].
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Why does the genetic code deviate so easily in ciliates?
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Peptide-specific ribosomes, genomic tags, and the origin of the genetic code.
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Twenty canonical amino acids of the genetic code: the arithmetical regularities. Part I.
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A Darwinian evolutionary system. II. Experiments on protein evolution and evolutionary aspects of the genetic code.
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Transfer RNA: from minihelix to genetic code.
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Unorthodox codon reading and the evolution of the genetic code.
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Genetic coding: approaches to theory construction.
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On malleability in the genetic code.
To explain now-numerous cases of codon reassignment (departure from the "universal" code), we suggest a pathway in which the transformed codon is temporarily ambiguous. All the unusual tRNA activities required have been demonstrated. In addition, the repetitive use of certain reassignments, the phylogenetic distribution of reassignments, and the properties of present-day reassinged tRNAs are each consistent with evolution of the code via an ambiguous translational intermediate.
Coevolution theory of the genetic code: is the precursor-product hypothesis invalid?
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