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A codon table can be used to translate a genetic code into a sequence of amino acids. [1] [2] The standard genetic code is traditionally represented as an RNA codon table, because when proteins are made in a cell by ribosomes, it is messenger RNA (mRNA) that directs protein synthesis. [2] [3] The mRNA sequence is determined by the sequence of ...
The yeast mitochondrial code; The mold, protozoan, and coelenterate mitochondrial code and the mycoplasma/spiroplasma code; The invertebrate mitochondrial code; The ciliate, dasycladacean and hexamita nuclear code; The deleted kinetoplast code; cf. table 4. deleted, cf. table 1. The echinoderm and flatworm mitochondrial code; The euplotid ...
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This mRNA molecule will instruct a ribosome to synthesize a protein according to this code. The genetic code is the set of rules used by living cells to translate information encoded within genetic material ( DNA or RNA sequences of nucleotide triplets or codons ) into proteins .
Gene nomenclature is the scientific naming of genes, the units of heredity in living organisms. It is also closely associated with protein nomenclature, as genes and the proteins they code for usually have similar nomenclature.
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For each nucleotide triplet (square brackets), the corresponding amino acid is given (one-letter code), either in the +1 reading frame for MT-ATP8 (in red) or in the +3 frame for MT-ATP6 (in blue). In this genomic region, the two genes overlap. The start codon is the first codon of a messenger RNA (mRNA) transcript translated by a ribosome.
mRNA trans-splicing: Nematodes [5] Small Cajal body-specific RNA: scaRNA: Type of snoRNA; Nucleotide modification of RNAs: Guide RNA: gRNA: mRNA nucleotide modification: Kinetoplastid mitochondria [6] Ribonuclease P: RNase P: tRNA maturation: All organisms [7] Ribonuclease MRP: RNase MRP: rRNA maturation, DNA replication: Eukaryotes [8] Y RNA ...