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RNA splicing is a post-transcriptional mechanism where precursor mRNA, or pre-mRNA, is converted into mature mRNA by removing the introns and re-joining the exons.
Constitutive RNA splicing joins each exon in their order in the gene to produce a single type of mature mRNA. For example, in a eukaryotic gene with five exons, numbered 1 to 5, constitutive splicing of pre-mRNA will result in a mature mRNA with five exons.
In contrast, alternative RNA splicing uses a single gene to produce multiple types of proteins by joining or removing different combinations of exons and introns to produce distinct mature mRNAs.
A gene containing five exons might be spliced into a mature mRNA with exons 1 and 5; exons 2, 3 and 5; or exons 1, 3 and 4. In some cases, the mature mRNA may even contain a retained intron. These variations allow eukaryotic cells to produce a larger assortment of proteins than the number of genes present in their DNA.
Alternative mRNA splicing allows the same gene to produce different tissue-specific forms of the mature mRNA. For example, different variants of alpha tropomyosin are expressed in smooth muscle cells, striated muscle cells, and brain cells.
Alternative RNA s
Alternative RNA splicing is the regulated splicing of exons and introns to produce different mature mRNAs from a single pre-mRNA. Unlike in constituti…
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