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  2. DNA and RNA codon tables - Wikipedia

    en.wikipedia.org/wiki/DNA_and_RNA_codon_tables

    There are 64 different codons in the genetic code and the below tables; most specify an amino acid. [6] Three sequences, UAG, UGA, and UAA, known as stop codons , [ note 1 ] do not code for an amino acid but instead signal the release of the nascent polypeptide from the ribosome. [ 7 ]

  3. Genetic code - Wikipedia

    en.wikipedia.org/wiki/Genetic_code

    If amino acids were randomly assigned to triplet codons, there would be 1.5 × 10 84 possible genetic codes. [81]: 163 This number is found by calculating the number of ways that 21 items (20 amino acids plus one stop) can be placed in 64 bins, wherein each item is used at least once. [82]

  4. Translation (biology) - Wikipedia

    en.wikipedia.org/wiki/Translation_(biology)

    The ribosome molecules translate this code to a specific sequence of amino acids. The ribosome is a multisubunit structure containing ribosomal RNA (rRNA) and proteins. It is the "factory" where amino acids are assembled into proteins. Transfer RNAs (tRNAs) are small noncoding RNA chains (74–93 nucleotides) that transport amino acids to the ...

  5. Gene - Wikipedia

    en.wikipedia.org/wiki/Gene

    There are 64 possible codons (four possible nucleotides at each of three positions, hence 4 3 possible codons) and only 20 standard amino acids; hence the code is redundant and multiple codons can specify the same amino acid. The correspondence between codons and amino acids is nearly universal among all known living organisms. [75]

  6. Alloprotein - Wikipedia

    en.wikipedia.org/wiki/Alloprotein

    The possibility for novel amino acids and proteins arises because, in nature, the genetic code responsible for protein structure has 64 possible codons available for encoding all amino acids used in proteins (4 nucleotides in each of 3 bases; 4 x 4 x 4 gives 64 possible combinations [3]); however, in human beings and other eukaryotes, these ...

  7. Transfer RNA - Wikipedia

    en.wikipedia.org/wiki/Transfer_RNA

    Because nucleotide triplets can present more combinations than there are amino acids and associated tRNAs, there is redundancy in the genetic code, and several different 3-nucleotide codons can express the same amino acid. This codon bias is what necessitates codon optimization.

  8. Protein primary structure - Wikipedia

    en.wikipedia.org/wiki/Protein_primary_structure

    Protein primary structure is the linear sequence of amino acids in a peptide or protein. [1] By convention, the primary structure of a protein is reported starting from the amino-terminal (N) end to the carboxyl-terminal (C) end. Protein biosynthesis is most commonly performed by ribosomes in cells. Peptides can also be synthesized in the ...

  9. Nucleic acid sequence - Wikipedia

    en.wikipedia.org/wiki/Nucleic_acid_sequence

    The sequence of nucleobases on a nucleic acid strand is translated by cell machinery into a sequence of amino acids making up a protein strand. Each group of three bases, called a codon, corresponds to a single amino acid, and there is a specific genetic code by which each possible combination of three bases corresponds to a specific amino acid.