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  2. Frameshift mutation - Wikipedia

    en.wikipedia.org/wiki/Frameshift_mutation

    A frameshift mutation can drastically change the coding capacity (genetic information) of the message. [1] Small insertions or deletions (those less than 20 base pairs) make up 24% of mutations that manifest in currently recognized genetic disease. [10] Frameshift mutations are found to be more common in repeat regions of DNA.

  3. Protein-truncating variants - Wikipedia

    en.wikipedia.org/wiki/Protein-truncating_variants

    Protein-truncating variants (PTVs) are genetic variants predicted to shorten the coding sequence of genes, [1] through ways like a stop-gain mutation. [2] [3] [4] [5 ...

  4. Ribosomal frameshift - Wikipedia

    en.wikipedia.org/wiki/Ribosomal_frameshift

    This is a graphical representation of the HIV1 frameshift signal. A −1 frameshift in the slippery sequence region results in translation of the pol instead of the gag protein-coding region, or open reading frame (ORF). Both gag and pol proteins are required for reverse transcriptase, which is essential to HIV1 replication.

  5. Crick, Brenner et al. experiment - Wikipedia

    en.wikipedia.org/wiki/Crick,_Brenner_et_al...

    The Crick, Brenner et al. experiment (1961) was a scientific experiment performed by Francis Crick, Sydney Brenner, Leslie Barnett and R.J. Watts-Tobin. It was a key experiment in the development of what is now known as molecular biology and led to a publication entitled "The General Nature of the Genetic Code for Proteins" and according to the historian of Science Horace Judson is "regarded ...

  6. Insertion (genetics) - Wikipedia

    en.wikipedia.org/wiki/Insertion_(genetics)

    Frameshift mutations will alter all the amino acids encoded by the gene following the mutation. Usually, insertions and the subsequent frameshift mutation will cause the active translation of the gene to encounter a premature stop codon , resulting in an end to translation and the production of a truncated protein.

  7. Point mutation - Wikipedia

    en.wikipedia.org/wiki/Point_mutation

    Point mutations have a variety of effects on the downstream protein product—consequences that are moderately predictable based upon the specifics of the mutation. These consequences can range from no effect (e.g. synonymous mutations) to deleterious effects (e.g. frameshift mutations), with regard to protein production, composition, and function.

  8. BRCA mutation - Wikipedia

    en.wikipedia.org/wiki/BRCA_mutation

    Deleterious mutation: The change is proven to cause significant risks. Often, these are frameshift mutations that prevent the cell from producing more than the first part of the necessary protein. Suspected deleterious: While nothing is proven, the variation is currently believed to be harmful.

  9. Mutation - Wikipedia

    en.wikipedia.org/wiki/Mutation

    Point mutations classified by impact on protein Selection of disease-causing mutations, in a standard table of the genetic code of amino acids [51] The effect of a mutation on protein sequence depends in part on where in the genome it occurs, especially whether it is in a coding or non-coding region.