BX Lab

Intermediates

3'-OMe-m7GDP TEA Salt

Quick view. We supply 3'-OMe-m7GDP TEA Salt as a methylated guanosine diphosphate cap intermediate used for ARCA-style cap analog preparation and analytical reference work. CAS 400806-44-2. Catalog target purity: Specification on request.

Chemical structure of 3'-OMe-m7GDP TEA Salt
Chemical structure
Catalog numberBX-INTE-0016
CAS number400806-44-2
PuritySpecification on request
Pack sizeCustomized to customer requirements

Product profile

Material identity

3'-OMe-m7GDP TEA Salt is classified as rna cap analog or cap-related nucleotide.

Typical application

3'-OMe-m7GDP TEA Salt can support enzyme-substrate, in-vitro transcription, polymerase-screening or analytical-reference studies as appropriate to its phosphate state.

Handling focus

For 3'-OMe-m7GDP TEA Salt, the 3′-O-methyl group blocks normal 3′-hydroxyl extension; confirm that this behavior matches the intended enzyme or synthesis workflow.

Names and search terms

Useful catalog search terms

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

Product-specific evaluation notes

Potential advantages

Method limitations

These points describe 3'-OMe-m7GDP TEA Salt or its named chemical feature. Broader product-family guidance is maintained on the category page.

Related products

Frequently asked questions

Can the package size for 3'-OMe-m7GDP TEA 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-INTE-0016 and CAS 400806-44-2, 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 Intermediates product family and its named chemistry.

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