deoxyribose has been researched along with s-adenosylmethionine in 4 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 1 (25.00) | 18.2507 |
2000's | 1 (25.00) | 29.6817 |
2010's | 2 (50.00) | 24.3611 |
2020's | 0 (0.00) | 2.80 |
Authors | Studies |
---|---|
Guschlbauer, W | 1 |
He, C; Shigdel, UK | 1 |
Allemann, O; Bissantz, C; Burgy, G; Diederich, F; Ehler, A; Ellermann, M; Grünstein, D; Jakob-Roetne, R; Lerner, C; Paulini, R; Rudolph, MG; Stihle, M; Tissot, H | 1 |
Angerhofer, A; Beaudoin, GAW; Bruner, SD; Fiehn, O; Folz, J; Goodsell, JL; Hanson, AD; Li, Q | 1 |
1 review(s) available for deoxyribose and s-adenosylmethionine
Article | Year |
---|---|
"Small is beautiful": major modifications in DNA structure or dynamics by small substituents or ligands.
Topics: Adenine; Base Sequence; Deoxyribose; DNA; Guanine Nucleotides; Guanosine; Ligands; Magnetic Resonance Spectroscopy; Methylation; Models, Molecular; Molecular Sequence Data; Nucleic Acid Conformation; Plasmids; Polydeoxyribonucleotides; S-Adenosylmethionine; Site-Specific DNA-Methyltransferase (Adenine-Specific) | 1996 |
3 other study(ies) available for deoxyribose and s-adenosylmethionine
Article | Year |
---|---|
A new 1'-methylenedisulfide deoxyribose that forms an efficient cross-link to DNA cytosine-5 methyltransferase (DNMT).
Topics: Cross-Linking Reagents; Deoxyribose; Disulfides; DNA (Cytosine-5-)-Methyltransferases; DNA Probes; DNA-Cytosine Methylases; DNA, Single-Stranded; Organophosphorus Compounds; S-Adenosylmethionine | 2008 |
Catechol-O-methyltransferase in complex with substituted 3'-deoxyribose bisubstrate inhibitors.
Topics: Binding Sites; Catechol O-Methyltransferase; Catechol O-Methyltransferase Inhibitors; Catechols; Crystallography, X-Ray; Deoxyribose; Dopamine; Drug Design; Levodopa; Models, Molecular; Parkinson Disease; Ribose; S-Adenosylmethionine | 2012 |
Salvage of the 5-deoxyribose byproduct of radical SAM enzymes.
Topics: Aldehyde-Lyases; Aldehydes; Bacillus thuringiensis; Biological Transport; Crystallography, X-Ray; Deoxyadenosines; Deoxyribose; Escherichia coli; Gene Deletion; Isomerases; Metabolomics; Phenotype; Phosphotransferases; Protein Conformation; Ribosemonophosphates; S-Adenosylmethionine | 2018 |