You Searched For: Cytosine-beta-D-arabinofuranoside+hydrochloride


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Supplier: Thermo Scientific Chemicals
Description: Interferes with the synthesis of DNA
Catalog Number: (TCC2035-1G)
Supplier: TCI America
Description: CAS Number: 147-94-4
Molecular Formula: C9H13N3O5
Molecular Weight: 243.22
Purity/Analysis Method: >98.0% (HPLC,T)
Form: Crystal
Melting point (°C): 214
Specific rotation [a]20/D: 158 deg (C=1, H2O)
Lambda max.: 272 nm (H2O)

Supplier: TCI America
Description: CAS Number: 10212-25-6
MDL Number: MFCD00012636
Molecular Formula: C9H11N3O4
Molecular Weight: 261.66
Purity/Analysis Method: >98.0% (HPLC,N)
Form: Crystal
Melting point (°C): 264
Specific rotation [a]20/D: -21 deg (C=2, H2O)
Supplier: Thermo Scientific Chemicals
Description: Anti-tumor agent
Supplier: TCI America
Description: CAS Number: 38819-10-2
MDL Number: MFCD00065486
Molecular Formula: C10H13N5O5
Molecular Weight: 283.24
Purity/Analysis Method: >98.0% (HPLC)
Form: Crystal
Melting point (°C): 225
Lambda max.: 252 nmStorage Temperature: 0-10°C
Supplier: Thermo Scientific Chemicals
Description: Powder
Supplier: Thermo Scientific Chemicals
Description: Powder
Supplier: Enzo Life Sciences
Description: F-ara-A precursor

Catalog Number: (10167-708)
Supplier: Genetex
Description: Rabbit Polyclonal antibody to DNMT3B (DNA (cytosine-5-)-methyltransferase 3 beta)


Catalog Number: (CAAAJ65562-03)
Supplier: Thermo Scientific Chemicals
Description: Powder

Catalog Number: (89151-596)
Supplier: Enzo Life Sciences
Description: DNA methyltransferase inhibitor


Catalog Number: (10490-042)
Supplier: Bioss
Description: Cytidine is a nucleoside formed by a cytosine attached to a ribose ring via a beta-N1-glycosidic bond. DNA is methylated on cytidines by DNA methylases (DNMTs)to generate 5-methylcytidine (5-mC), a potent epigenetics marker and regulator of gene expression. The reverse reaction (cytidine demethylation) starts with its oxidation to hydroxymethyl- (5-hmC), formyl- (5-fC), and carboxy- (5-caC) cytidine. Several enzymes, including the Tet family of proteins have been implicated in cytidine demethylation.


Catalog Number: (10490-058)
Supplier: Bioss
Description: Cytidine is a nucleoside formed by a cytosine attached to a ribose ring via a beta-N1-glycosidic bond. DNA is methylated on cytidines by DNA methylases (DNMTs)to generate 5-methylcytidine (5-mC), a potent epigenetics marker and regulator of gene expression. The reverse reaction (cytidine demethylation) starts with its oxidation to hydroxymethyl- (5-hmC), formyl- (5-fC), and carboxy- (5-caC) cytidine. Several enzymes, including the Tet family of proteins have been implicated in cytidine demethylation.


Catalog Number: (10490-056)
Supplier: Bioss
Description: Cytidine is a nucleoside formed by a cytosine attached to a ribose ring via a beta-N1-glycosidic bond. DNA is methylated on cytidines by DNA methylases (DNMTs)to generate 5-methylcytidine (5-mC), a potent epigenetics marker and regulator of gene expression. The reverse reaction (cytidine demethylation) starts with its oxidation to hydroxymethyl- (5-hmC), formyl- (5-fC), and carboxy- (5-caC) cytidine. Several enzymes, including the Tet family of proteins have been implicated in cytidine demethylation.


Catalog Number: (76109-316)
Supplier: Bioss
Description: Cytidine is a nucleoside formed by a cytosine attached to a ribose ring via a beta-N1-glycosidic bond. DNA is methylated on cytidines by DNA methylases (DNMTs)to generate 5-methylcytidine (5-mC), a potent epigenetics marker and regulator of gene expression. The reverse reaction (cytidine demethylation) starts with its oxidation to hydroxymethyl- (5-hmC), formyl- (5-fC), and carboxy- (5-caC) cytidine. Several enzymes, including the Tet family of proteins have been implicated in cytidine demethylation.


Catalog Number: (10490-054)
Supplier: Bioss
Description: Cytidine is a nucleoside formed by a cytosine attached to a ribose ring via a beta-N1-glycosidic bond. DNA is methylated on cytidines by DNA methylases (DNMTs)to generate 5-methylcytidine (5-mC), a potent epigenetics marker and regulator of gene expression. The reverse reaction (cytidine demethylation) starts with its oxidation to hydroxymethyl- (5-hmC), formyl- (5-fC), and carboxy- (5-caC) cytidine. Several enzymes, including the Tet family of proteins have been implicated in cytidine demethylation.


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