BX Lab

Modified Nucleotides

5-OH-CTP Lithium Salt

Quick view. We supply 5-OH-CTP Lithium Salt as a base-modified nucleotide analog for studying how nucleobase substitution changes polymerase recognition, RNA/DNA stability and downstream biochemical behavior. CAS 494870-49-4. Catalog target purity: Specification on request.

Chemical structure of 5-OH-CTP Lithium Salt
Chemical structure
Catalog numberBX-MN-0075
CAS number494870-49-4
PuritySpecification on request
Pack sizeCustomized to customer requirements

Product profile

Material identity

5-OH-CTP Lithium Salt is classified as nucleotide or nucleotide analog.

Typical application

5-OH-CTP Lithium Salt can support enzyme-substrate, in-vitro transcription, polymerase-screening or analytical-reference studies as appropriate to its phosphate state.

Handling focus

For 5-OH-CTP Lithium Salt, confirm the current specification, storage conditions and downstream-method compatibility before routine use.

Names and search terms

Useful catalog search terms

Physicochemical data

Key chemistry motifstriphosphate group
CAS contextThe listed CAS refers to the parent/free-acid identity; confirm the supplied salt or counterion in the current specification.

Release documentation

Lot-specific CoA

The current specification defines the analytical method and acceptance criteria; the released lot result is reported on the CoA.

Analytical package

Additional HPLC, MS or NMR documentation can be agreed during technical review where available.

Additional application examples

Related products

Frequently asked questions

Can the package size for 5-OH-CTP Lithium Salt be customized?

Yes. Share the initial quantity, expected future scale, delivery timeline and packaging preference for review.

What information should be included in a quote request?

Quote catalog number BX-MN-0075 and CAS 494870-49-4, the intended research workflow, required quantity and any additional HPLC, MS or NMR documentation needed.

Product-family literature

The publications below provide peer-reviewed context for the Modified Nucleotides product family and its named chemistry.

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