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The analyses of the genetic code suggest assignments as found in Echinodermata, although two important codons are missing (AAA and AAG) [ 31].
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These results, and those of our previous study with maltose binding protein model system, confirm that non-optimal codons are important for expression and export of secretory proteins via both the SecB-dependent and -independent pathways.
Because the start and stop codons are functionally important sequences less structure around these codons might correlate with the ribosome complex recognizing these parts of the mRNA with greater reliability.
Interestingly, all of the selected variables are di-codons (no single codons), providing additional support for that the interaction of codons are highly important for explaining variations in phyla [ 49, 52, 64].
Because optimum codons are advantageous for fast and accurate translation, highly expressed or biologically important genes would have more optimum codons than others.
Codon usage bias indicates that specific codons are used more often from other synonymous codons by gene translation.
High-frequency codons are selected by high-frequency (HF) codon analysis.
A periodic table of codons has been designed where the codons are in regular locations.
Stop codons are also called "termination" or "nonsense" codons.
Stop codons are excluded.
Such codons are termed "preferred" or "major" codons.
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CEO of Professional Science Editing for Scientists @ prosciediting.com