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Messenger RNA
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==== Polyadenylation ==== {{main|Polyadenylation}} [[File:Polyadenylation.png|thumb|Polyadenylation]] Polyadenylation is the covalent linkage of a polyadenylyl moiety to a messenger RNA molecule. In eukaryotic organisms most messenger RNA (mRNA) molecules are polyadenylated at the 3' end, but recent studies have shown that short stretches of uridine (oligouridylation) are also common.<ref name="Choi_2012">{{cite journal | vauthors = Choi YS, Patena W, Leavitt AD, McManus MT | title = Widespread RNA 3'-end oligouridylation in mammals | journal = RNA | volume = 18 | issue = 3 | pages = 394β401 | date = March 2012 | pmid = 22291204 | pmc = 3285928 | doi = 10.1261/rna.029306.111 }}</ref> The [[messenger RNA#Poly(A) tail|poly(A) tail]] and the protein bound to it aid in protecting mRNA from degradation by exonucleases. Polyadenylation is also important for transcription termination, export of the mRNA from the nucleus, and translation. mRNA can also be polyadenylated in prokaryotic organisms, where poly(A) tails act to facilitate, rather than impede, exonucleolytic degradation.{{cn|date=February 2024}} Polyadenylation occurs during and/or immediately after transcription of DNA into RNA. After transcription has been terminated, the mRNA chain is cleaved through the action of an endonuclease complex associated with RNA polymerase. After the mRNA has been cleaved, around 250 adenosine residues are added to the free 3' end at the cleavage site. This reaction is catalyzed by [[polyadenylate polymerase]]. Just as in [[alternative splicing]], there can be more than one polyadenylation variant of an mRNA. Polyadenylation site mutations also occur. The primary RNA transcript of a gene is cleaved at the poly-A addition site, and 100β200 A's are added to the 3' end of the RNA. If this site is altered, an abnormally long and unstable mRNA construct will be formed.
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