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40632-25-5

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40632-25-5 Usage

Uses

Cytidine-5,6-d2 (CAS# 40632-25-5) is a useful isotopically labeled research compound.

Check Digit Verification of cas no

The CAS Registry Mumber 40632-25-5 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 4,0,6,3 and 2 respectively; the second part has 2 digits, 2 and 5 respectively.
Calculate Digit Verification of CAS Registry Number 40632-25:
(7*4)+(6*0)+(5*6)+(4*3)+(3*2)+(2*2)+(1*5)=85
85 % 10 = 5
So 40632-25-5 is a valid CAS Registry Number.

40632-25-5Upstream product

40632-25-5Downstream Products

40632-25-5Relevant academic research and scientific papers

Site of Protonation of One-Electron-Reduced Cytosine and Its Derivatives in Aqueous Methanol Glasses

Cullis, Paul M.,Malone, Mark E.,Podmore, Ian D.,Symons, Martyn C. R.

, p. 9293 - 9298 (1995)

Electron paramagnetic resonance spectra of one-electron-reduced cytosine, cytidine, 2'-deoxycytidine, 5'-dCMP, and 3'-dCMP produced by 60Co γ-irradiation in aqueous lithium chloride glasses (LiCl/H2O) and aqueous methanol glasses (MeOH/H2O) at 77 K exhibited a triplet which has been interpreted in terms of the radical anion protonating on the exocyclic amino group of the base C(N4+H). (II).The exchangeable nature of the extra proton coupling is demonstrated by the collapse of the triplet into a doublet in LiCl/D2O and CD3OD/D2O glasses.The EPR spectrum of cytidine-5,6-d2 in either LiCl glasses or aqueous methanol led to a doublet in each case, consistent with the loss of the coupling to the hydrogen on C6, with the remaining coupling due to the protonation on the exocyclic amino group.Comparable experiments in LiCl/D2O or CD3OD/D2O glasses led derectly to a singlet.The results in aqueous methanol glasses parallel closely those in aqueous LiCl glasses and provide clear evidence for protonation on the exocyclic amino group even in the absence of metal ion coordination to N3.Hence, N4 protonation of the cytosine radical anion is not a result of metal ion coordination to N3 as has been suggested by others.We suggest that N4 protonation is kinetically controlled, possibly brought about by solvation effects, whereas the N3 protonation would occur under thermodynamic control.

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