Rp-cAMPS sodium salt

Catalog No.: A37151
PKA I/II Antagonist
Rp-cAMPS sodium salt is a selective antagonist of protein kinase A (PKA) I and II, acting through competitive inhibition of cAMP-induced activation, with inhibition constants (Kis) of 12.5 µM and 4.5 µM, respectively. This stable cAMP analog is resistant to phosphodiesterase hydrolysis, making it an essential tool for investigating PKA signaling pathways. Rp-cAMPS sodium salt is widely utilized in cellular and biochemical research applications where modulation of PKA activity is required.
Grouped product items
Size Price Stock Qty
1mg
$145.00
In stock
5mg
$245.00
In stock
10mg
$430.00
In stock
25mg
$940.00
In stock
50mg
$1,560.00
In stock
100mg
$2,560.00
In stock
Bulk Size
Bulk Discount
Free Delivery on orders over $500
Research use only. We do not sell to patients.

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Adooq Products cited in reputable paper
Science VOLUME 380, ISSUE 6663 (2023)
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Cell Vol 156, Issue 5, p857-1114
Nature Volume 622 Issue 7982 (2023)
Nature volume 620, pages890-897 (2023)
Nature volume 610, pages540-546 (2022)
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Nature volume 574, pages268-272 (2019)
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Nature volume 551, pages639-643 (2017)
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Biological Activity
DescriptionRp-cAMPS sodium salt is a selective antagonist of protein kinase A (PKA) I and II, acting through competitive inhibition of cAMP-induced activation, with inhibition constants (Kis) of 12.5 µM and 4.5 µM, respectively. This stable cAMP analog is resistant to phosphodiesterase hydrolysis, making it an essential tool for investigating PKA signaling pathways. Rp-cAMPS sodium salt is widely utilized in cellular and biochemical research applications where modulation of PKA activity is required.
Product Information
Catalog NumA37151
FormulaC10H11N5NaO5PS
Molecular Weight367.25
CAS Number142439-94-9
SMILESO[C@H]1[C@@H](O[C@@]2([H])[C@@]1([H])O[P@@](OC2)([S-])=O)N3C4=C(C(N)=NC=N4)N=C3.[Na+]
Useful Calculator

This calculator helps you calculate mass of compound based on solution concentration, volume and molecular weight in a specific solution using the formula:

Mass (mg) = Concentration (mM) × Volume (mL) × Molecular Weight (g/mol)

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Calculate the dilution required to prepare a stock solution.
This equation is commonly abbreviated as: C1V1 = C2V2

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