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PKA II

" in MedChemExpress (MCE) Product Catalog:

22

Inhibitors & Agonists

3

Biochemical Assay Reagents

2

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2

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1

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2

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Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-100530C

    PKA Phosphodiesterase (PDE) Neurological Disease Metabolic Disease
    Sp-cAMPS sodium salt, a cAMP analog, is potent activator of cAMP-dependent PKA I and PKA II. Sp-cAMPS sodium salt is also a potent, competitive phosphodiesterase (PDE3A) inhibitor with a Ki of 47.6 µM. Sp-cAMPS sodium salt binds the PDE10 GAF domain with an EC50 of 40 μM .
    Sp-cAMPS sodium salt
  • HY-156630
    Ionizable lipid-1
    1 Publications Verification

    Liposome Others
    Ionizable lipid-1 (compound II-10) is an ionizable lipid (pKa=6.16) that can be used to prepare lipid nanoparticles (LNP) with bilayer structure .
    Ionizable lipid-1
  • HY-D0874

    Biochemical Assay Reagents Others
    HEPPSO is a zwitterionic buffer. The working pH range of HEPPSO buffer is 7.1-8.5. HEPPSO displays relatively high ability to bind copper(II), has a pKa of 7.84 at 2.0 mM buffer concentration .
    HEPPSO
  • HY-100530D
    Rp-cAMPS sodium salt
    3 Publications Verification

    PKA Neurological Disease
    Rp-cAMPS sodium salt, a cAMP analog, is a potent, competitive cAMP-induced activation of cAMP-dependent PKA I and II (Kis of 12.5 µM and 4.5 µM, respectively) antagonist. Rp-cAMPS sodium salt is resistant to hydrolysis by phosphodiesterases .
    Rp-cAMPS sodium salt
  • HY-P10602

    RII phosphopeptide

    PKA Others
    PKA Regulatory Subunit II Substrate (RII phosphopeptide) is a tool peptide derived from the regulatory subunit Type II (RII) of cyclic AMP-dependent protein kinase (PKA). PKA Regulatory Subunit II Substrate is commonly used to mimic the phosphorylation of protein kinases and as a specific substrate for protein phosphatases to assess the activities of these enzymes .
    PKA Regulatory Subunit II Substrate
  • HY-100530B

    PKA Phosphodiesterase (PDE) Neurological Disease Metabolic Disease
    Sp-cAMPS, a cAMP analog, is potent activator of cAMP-dependent PKA I and PKA II. Sp-cAMPS is also a potent, competitive phosphodiesterase (PDE3A) inhibitor with a Ki of 47.6 µM. Sp-cAMPS binds the PDE10 GAF domain with an EC50 of 40 μM .
    Sp-cAMPS
  • HY-110005

    PKA Phosphodiesterase (PDE) Neurological Disease Metabolic Disease
    Sp-cAMPS triethylamine, a cAMP analog, is potent activator of cAMP-dependent PKA I and PKA II. Sp-cAMPS triethylamine is also a potent, competitive phosphodiesterase (PDE3A) inhibitor with a Ki of 47.6 µM. Sp-cAMPS triethylamine binds the PDE10 GAF domain with an EC50 of 40 μM .
    Sp-cAMPS triethylamine
  • HY-156630A

    Liposome Others
    Ionizable lipid-1 (compound II-10) is an ionizable lipid (pKa=6.16) that can be used to prepare lipid nanoparticles (LNP) with bilayer structure .
    Ionizable lipid-1 hydrochloride
  • HY-120994B

    PKA Neurological Disease Inflammation/Immunology
    Sp-8-CPT-cAMPS, a cAMP analog, is a potent and selective activator of the cAMP-dependent protein kinas A (PKA I and PKA II). Sp-8-CPT-cAMPS selects site A of RI compares to site A of RII by 153-fold and site B of RII compares to site B of RI by 59-fold .
    Sp-8-CPT-cAMPS
  • HY-131777

    PKA Others
    2-Cl-cAMP is an analog of cAMP and a potent stimulator of cAMP-dependent protein kinases such as PKA type I and II. 2-Cl-cAMP can be used as starting material for cyclic nucleotides .
    2-Cl-cAMP
  • HY-100530A

    PKA Neurological Disease
    Rp-cAMPS, a cAMP analog, is a potent, competitive cAMP-induced activation of cAMP-dependent PKA I and II (Kis of 12.5 μM and 4.5 μM, respectively) antagonist. Rp-cAMPS is resistant to hydrolysis by phosphodiesterases .
    Rp-cAMPS
  • HY-P2847

    CRFR Metabolic Disease Endocrinology
    Urocortin II, mouse is a potent and selective endogenous peptide agonist of type-2 corticotropin-releasing factor (CRF2) receptor with Ki values of 0.66 nM and ﹥100 nM for CRFR2 and CRFR1, respectively. Urocortin II, mouse activates CRF2 receptors in a cAMP/PKA- and Ca 2+/CaMKII-dependent manner.Urocortin II, mouse is expressed in discrete areas of the central nervous system, and activates central neurons involved in the processing of visceral sensory information, and in modulating autonomic outflow .
    Urocortin II, mouse
  • HY-11012
    TDZD-8
    10+ Cited Publications

    GSK-3β Inhibitor I; NP 01139

    GSK-3 Cancer
    TDZD-8 is an inhibitor of GSK-3β, with an IC50 of 2 μM; TDZD-8 shows less potent activities against Cdk-1/cyclin B, CK-II, PKA, and PKC, with all IC50s of >100 μM.
    TDZD-8
  • HY-100530

    PKA Neurological Disease
    Rp-cAMPS triethylammonium salt, a cAMP analog, is a potent, competitive cAMP-induced activation of cAMP-dependent PKA I and II (Kis of 12.5 μM and 4.5 μM, respectively) antagonist. Rp-cAMPS triethylammonium salt is resistant to hydrolysis by phosphodiesterases .
    Rp-cAMPS triethylammonium salt
  • HY-120994A

    PKA Neurological Disease Inflammation/Immunology
    Rp-8-CPT-cAMPS, a cAMP analog, is a potent and competitive antagonist of cAMP-induced activation of cAMP-dependent PKA I and II. Rp-8-CPT-cAMPS preferentially selects site A of RI compares to site A of RII and site B of RII compares to site B of RI .
    Rp-8-CPT-cAMPS
  • HY-16071
    AT13148
    2 Publications Verification

    Akt PKA ROCK Ribosomal S6 Kinase (RSK) Cancer
    AT13148 is an orally active and ATP-competitive, multi-AGC kinase inhibitor with IC50s of 38 nM/402 nM/50 nM, 8 nM, 3 nM, and 6 nM/4 nM for Akt1/2/3, p70S6K, PKA, and ROCKI/II, respectively.
    AT13148
  • HY-120994

    PKA Neurological Disease Inflammation/Immunology
    Rp-8-CPT-cAMPS sodium, a cAMP analog, is a potent and competitive antagonist of cAMP-induced activation of cAMP-dependent PKA I and II. Rp-8-CPT-cAMPS sodium preferentially selects site A of RI compares to site A of RII and site B of RII compares to site B of RI .
    Rp-8-CPT-cAMPS sodium
  • HY-137530

    8-Methylamino-cAMP

    PKA Others
    8-MA-cAMP (8-Methylamino-cAMP) is a cyclic AMP analog that acts as a site-selective PKA agonist with similar affinity for the B site of type I and type II protein kinase A. 8-MA-cAMP is used in conjunction with priming analogs that show site A preference, such as 8-piperidinyl cAMP, to achieve selective stimulation of type I .
    8-MA-cAMP
  • HY-101775

    Topoisomerase Cardiovascular Disease Cancer
    9-hydroxyellipticine is an inhibitor of Topo II and RyR, exhibiting high affinity for DNA with a Pka value of 9.8 at pH 7.4. It has antitumor, antioxidant, and catecholamine-releasing activities, with IC50 values of 1.6 μM and 1.2 μM for Hela S-3 and 293T cells, respectively. It also demonstrates anticancer effects in L1210 leukemia mice .
    9-Hydroxyellipticin
  • HY-N6732
    K-252a
    Maximum Cited Publications
    16 Publications Verification

    SF2370; Antibiotic K 252a; Antibiotic SF 2370

    PKC PKA CaMK Trk Receptor Autophagy Antibiotic Infection Inflammation/Immunology
    K-252a, a staurosporine analog, inhibits protein kinase, with IC50 values of 470 nM, 140 nM, 270 nM, and 1.7 nM for PKC, PKA, Ca 2+/calmodulin-dependent kinase type II, and phosphorylase kinase, respectively . K-252a is a potent inhibitor (IC50 of 3 nM) of the tyrosine protein kinase (TRK) activity of the NGF receptor gp140trk, the product of the trk protooncogene .
    K-252a
  • HY-125957

    PKA Casein Kinase CaMK PKC Others
    A-3 hydrochloride is a potent, cell-permeable, reversible, ATP-competitive non-selective antagonist of various kinases. It against PKA (Ki=4.3 μM), casein kinase II (Ki=5.1 μM) and myosin light chain kinase (MLCK) (Ki=7.4 μM). A-3 hydrochloride also inhibits PKC and casein kinase I with Ki values of 47 μM and 80 μM, respectively .
    A-3 hydrochloride
  • HY-121197

    Ophiocordin; Azepinostatin

    MARCKS PKA PKC Others
    Balanol (Ophiocordin; Azepinostatin) is a potent and ATP competitive PKC/PKA inhibitor against human PKC isozymes α, β-I, β-II, γ, δ, ε, η (IC50s=4-9 nM) and ζ (IC50=150 nM). Balanol also blocks the phosphorylation of cyclic AMP response element-binding protein (CREB) and myristoylated alanine-rich C kinase substrate (MARCKS). Balanol can be isolated from the fungus Verticillium balanoides .
    Balanol

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