Oligonucleotide Synthesis, RNA Raw Materials & Modification

CTP, 100 mM Solution

Oligonucleotide Synthesis, RNA Raw Materials & Modification

Product NoCH66008CAS No65-47-4Purity>=99% (HPLC)
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Product summary

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Product family
Oligonucleotide Synthesis, RNA Raw Materials & Modification
MF
C9H16N3O14P3
MW
483.16
Purity
>=99% (HPLC)

CTP, 100 mM Solution is cytidine-5'-triphosphate (CTP) listed in a 100 mM solution presentation. Key identifiers include CAS 65-47-4, molecular formula C9H16N3O14P3, and molecular weight 483.16 (PubChem CID 6176).

CTP is one of the four ribonucleoside triphosphates (rNTPs). RNA polymerase uses ribonucleoside triphosphate substrates for template-directed RNA synthesis, so CTP supplies the cytosine (C) residue during enzymatic RNA synthesis — for example in in vitro transcription.

Synonyms

cytidine 5'-triphosphate; CTP, 100 mM solution

Identity and specifications

Catalog No.CH66008
CAS No.65-47-4
Molecular FormulaC9H16N3O14P3
Molecular Weight483.16
PubChem CID6176
Concentration100 mM solution
InChIKeyPCDQPRRSZKQHHS-XVFCMESISA-N
Purity>=99% (HPLC)

Storage conditions

-20 C

Technical attributes

Nucleotide class
rNTP
Nucleobase
Cytosine
5'-phosphate state
Triphosphate
Grade
PCR Grade
Packaging
250 µL; 1 mL; 5 mL; 10 mL; 100 mL; 25 µmol; Custom packaging on request
Solution concentration
100 mM +/- 2%
Physical form
clear aqueous solution
Stability
12 months

Application context

  • Cytosine rNTP substrate: supplies the cytosine (C) residue during enzymatic, template-directed RNA synthesis by RNA polymerase.
  • Common reactions: in vitro transcription and other RNA-polymerase-based RNA synthesis reactions.
  • Solution presentation: listed as a 100 mM solution; solvent, counterion, and buffer are not specified.

Related technical resources

Public references

Frequently Asked Questions

What is CTP used for?

CTP is the cytosine ribonucleoside triphosphate. RNA polymerase uses it as a substrate to add cytosine (C) residues during enzymatic, template-directed RNA synthesis — for example in in vitro transcription.

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