14.5
RNA is a mobile, relatively short-lived molecule that is much less structurally and chemically stable compared to DNA. In RNA, the five-carbon sugar ribose has a hydroxyl group at the second carbon, while deoxyribose has a single hydrogen. The hydrogen of the hydroxyl group is susceptible to being removed in basic solutions. When this occurs, the negatively charged oxygen that remains is capable of breaking the phosphate sugar backbone.
In addition, RNA is usually single stranded, making it less structurally stable than the double helix of DNA. RNA molecules are also much shorter than DNA molecules, so they're more vulnerable to degradation at their ends. External factors can also influence the stability of RNA. For example, specific exonucleases in the cytoplasm called RNases break down RNAs that are not actively being translated. Other proteins, known as RNA-binding proteins effect stability by recognizing and binding to specific RNA nucleotide sequences.
mRNA transcripts with AU-rich elements, usually repeats of AUUUA, in their three-prime untranslated regions, or three-prime UTRs, attract different classes of RNA-binding proteins with opposing roles. Some of these proteins enhance mRNA stability and increase protein translation while bounded to the three-prime UTR, while others destabilize the transcript so that it is degraded more quickly. Thus, the amount of time that an RNA molecule is available for translation is variable and dependent on multiple factors.
Intact DNA strands can be found in fossils, while scientists sometimes struggle to keep RNA intact under laboratory conditions. The structural variati…
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