2'-Deoxyuridine 5'-monophosphate disodium (Standard)
Based on 1 publication(s) in Google Scholar
2'-Deoxyuridine 5'-monophosphate (disodium) (Standard) is the analytical standard of 2'-Deoxyuridine 5'-monophosphate (disodium) (HY-W011142). This product is intended for research and analytical applications. 2'-Deoxyuridine 5'-monophosphate (dUMP) disodium is a deoxynucleotide that is reductively methylated to dTMP (2'-deoxythymidine 5'-monophosphate) by bisubstrate enzyme thymidylate synthase (TS). dTMP is a nucleotide required for DNA synthesis.
For research use only. We do not sell to patients.
- Purity : 98%
- CAS No.: 42155-08-8
- Formula: C9H11N2Na2O8P
- Molecular Weight:352.15
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Storage:
Please store the product under the recommended conditions in the Certificate of Analysis.
Publications Citing Use of MedChemExpress (MCE) 2'-Deoxyuridine 5'-monophosphate disodium (Standard)
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Product Information
Information
Application
The compound is the grade of analytical standard, which is the reference standard supplied assay. It is commonly used in qualitative, quantitative and methodological research experiments in HPLC, GC and MS.
Chemical Information
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CAS No. 42155-08-8
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Molecular Weight 352.15
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Formula C9H11N2Na2O8P
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SMILES
O[C@H]1C[C@H](N2C(NC(C=C2)=O)=O)O[C@@H]1COP(O[Na])(O[Na])=O
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Synonyms
dUMP disodium (Standard)
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Structure Classification
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Initial Source
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Shipping
Room temperature in continental US; may vary elsewhere.
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Storage
Please store the product under the recommended conditions in the Certificate of Analysis.
Publications (1)
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Journal Impact Factor
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Most Recent
Purity & Documentation
References
[1]. Zachary Newby, et al. The role of protein dynamics in thymidylate synthase catalysis: variants of conserved 2'-deoxyuridine 5'-monophosphate (dUMP)-binding Tyr-261. Biochemistry. 2006 Jun 20;45(24):7415-28. [Content Brief]
[2]. Skouloubris S, et al. Targeting of Helicobacter pylori thymidylate synthase ThyX by non-mitotoxic hydroxy-naphthoquinones. Open Biol. 2015 Jun;5(6):150015. [Content Brief]
Calculators
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)