Reactive oligonucleotide derivatives as gene-targeted biologically active compounds and affinity probes
Identifieur interne : 004965 ( Main/Exploration ); précédent : 004964; suivant : 004966Reactive oligonucleotide derivatives as gene-targeted biologically active compounds and affinity probes
Auteurs : D. G. Knorre [Russie] ; V. V. Vlassov [Russie]Source :
- Genetica [ 0016-6707 ] ; 1991-01-01.
Descripteurs français
- Wicri :
- topic : ADN.
English descriptors
- KwdEn :
- Teeft :
- Acid, Active compounds, Active oxygen species, Affinity modification, Alkylating, Alkylating derivatives, Alkylating oligonucleotide derivatives, Analog, Antisense, Antisense inhibitors, Antisense oligonucleotides, Antiviral, Antiviral activity, Cell culture, Coding region, Derivative, Dervan, Encephalitis virus, Feb, Febs lett, Gene expression, Helene, Helene toulme, Infectious agents, Inhibitor, Ivanova, Knorre, Lett, Macmillan, Macmillan press, Mamaev, Modification, Mrna, Nucleic, Nucleic acid, Nucleic acid polymerases, Nucleic acids, Nucleotide, Oligonucleotide, Oligonucleotide derivatives, Oligonucleotides, Polymerase, Reactive, Reactive groups, Reactive oligonucleotide derivatives, Reagent, Ribosome, Toulme, Vlassov, Zarytova.
Abstract
Abstract: Development of efficient methods for synthesis of oligonucleotides and oligonucleotide analogs has opened up the possibility of designing a broad spectrum of affinity reagents for specific modification of nucleic acids and proteins. These affinity reagents are used for investigation of the topology of ribosomes and nucleic acid polymerases. Oligonucleotides and their analogs are already used for suppression of specific gene expression and for elucidation of the physiological role of their products. Oligonucleotide derivatives appear to offer considerable promise as potential gene-targeted drugs such as antivirals and specific inhibitors of oncogene expression.
Url:
DOI: 10.1007/BF00056106
Affiliations:
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Le document en format XML
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<front><div type="abstract" xml:lang="en">Abstract: Development of efficient methods for synthesis of oligonucleotides and oligonucleotide analogs has opened up the possibility of designing a broad spectrum of affinity reagents for specific modification of nucleic acids and proteins. These affinity reagents are used for investigation of the topology of ribosomes and nucleic acid polymerases. Oligonucleotides and their analogs are already used for suppression of specific gene expression and for elucidation of the physiological role of their products. Oligonucleotide derivatives appear to offer considerable promise as potential gene-targeted drugs such as antivirals and specific inhibitors of oncogene expression.</div>
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