Categories
- PROTAC Linker
- Protein Control Ligand
- Pathway Inhibitors
- Function Modulators
- Activators
- G Protein-Coupled Receptor Ligands
- Nuclear Receptor Ligands
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- TNF Receptors
- Transcription Factors
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- Molecular Probes
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- Primary Cells
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- SARS-CoV
Overview
Pyrimidine (Metadiazine)s are heterocyclic, six-membered, nitrogen-containing carbon ring structures, with uracil, cytosine and thymine being the basal structures of ribose-containing nucleosides (uridine, cytidine, and thymidine respectively), or deoxyribose-containing deoxynucleosides, and their corresponding ribonucleotides or deoxyribonucleotides. Pyrimidines serve essential functions in human metabolism as ribonucleotide bases in RNA (uracil and cytosine), and as deoxyribonucleotide bases in DNA (cytosine and thymine), and are linked by phosphodiester bridges to purine nucleotides in double-stranded DNA, in both the nucleus and the mitochondria. Pyrimidine activated sugars are also involved in polysaccharide and phospholipid synthesis, glucuronidation in detoxification processes, glycosylation of proteins and lipids and in the recently identified novel endothelium-derived vasoactive dinucleotides.
Chemical Properties
| Molecular Formula | C4H4N2 |
| Molecular Weight | 80.09 |
| CAS Numbers | 289-95-2 |
| Solubility | DMSO |
| Purity | 98% by HPLC |
| SMILES Code | C=1C=NC=NC1 |
Storage and Handling
0C Short Term, -20C Long Term
References
Loffler M, et al. Pyrimidine pathways in health and disease. Trends Mol Med. 2005 Sep;11[9] 430-7.