oligonucleotide
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Oligonucleotides are short DNA or RNA molecules, oligomers, that have a wide range of applications in genetic testing, research, and forensics. Commonly made in the laboratory by solid-phase chemical synthesis, these small fragments of nucleic acids can be manufactured as single-stranded molecules with any user-specified sequence, and so are vital for artificial gene synthesis, polymerase chain reaction (PCR), DNA sequencing, molecular cloning and as molecular probes. In nature, oligonucleotides are usually found as small RNA molecules that function in the regulation of gene expression (e.g. m
Research
313,281 papers- Advances in oligonucleotide drug delivery.Nature reviews. Drug discovery · 2020
- Modern approaches to therapeutic oligonucleotide manufacturing.Science (New York, N.Y.) · 2024
- Drug Metabolism and Pharmacokinetics of Antisense Oligonucleotide Therapeutics: Typical Profiles, Evaluation Approaches, and Points to Consider Compared with Small Molecule Drugs.Nucleic acid therapeutics · 2023
- Oligonucleotide-Based Photoaffinity Probes: Chemical Tools and Applications for Protein Labeling.Chembiochem : a European journal of chemical biology · 2024
- Liquid-Phase Oligonucleotide Synthesis: Past, Present, and Future Predictions.Current protocols in nucleic acid chemistry · 2019
via PubMed
~11 min read
Article
14 sectionsContents
- Synthesis
- Chemical modifications
- Backbone modifications
- Sugar ring modifications
- Antisense oligonucleotides
- Cell internalisation
- Analytical techniques
- Chromatography
- Mass spectrometry
- DNA microarray
- See also
- References
- Further reading
- External links
Oligonucleotides are short DNA or RNA molecules, oligomers, that have a wide range of applications in genetic testing, research, and forensics. Commonly made in the laboratory by solid-phase chemical synthesis, these small fragments of nucleic acids can be manufactured as single-stranded molecules with any user-specified sequence, and so are vital for artificial gene synthesis, polymerase chain reaction (PCR), DNA sequencing, molecular cloning and as molecular probes. In nature, oligonucleotides are usually found as small RNA molecules that function in the regulation of gene expression (e.g. microRNA), or are degradation intermediates derived from the breakdown of larger nucleic acid molecules.
Oligonucleotides are characterized by the sequence of nucleotide residues that make up the entire molecule. The length of the oligonucleotide is usually denoted by "-mer" (from Greek meros, "part"). For example, an oligonucleotide of six nucleotides (nt) is a hexamer, while one of 25 nt would usually be called a "25-mer". Oligonucleotides readily bind, in a sequence-specific manner, to their respective complementary oligonucleotides, DNA, or RNA to form duplexes or, less often, hybrids of a higher order. This basic property serves as a foundation for the use of oligonucleotides as probes for detecting specific sequences of DNA or RNA. Examples of procedures that use oligonucleotides include DNA microarrays, Southern blots, ASO analysis, fluorescent in situ hybridization (FISH), PCR, and the synthesis of artificial genes.