PKA
- [1]. Turnham RE, et al. Protein kinase A catalytic subunit isoform PRKACA; History, function and physiology. Gene. 2016 Feb 15;577(2):101-8. [Content Brief]
- [2]. PKA gene information from NCBI.
- [3]. Søberg K, et al. The Molecular Basis for Specificity at the Level of the Protein Kinase a Catalytic Subunit. Front Endocrinol (Lausanne). 2018 Sep 12;9:538. [Content Brief]
- [4]. Pirooznia SK, et al. Parkinson Disease: Translating Insights from Molecular Mechanisms to Neuroprotection. Pharmacol Rev. 2021 Oct;73(4):33-97. [Content Brief]
- [5]. Glebov-McCloud AGP, et al. Protein Kinase A in neurological disorders. J Neurodev Disord. 2024 Mar 13;16(1):9. [Content Brief]
- [6]. Taylor SS, et al. PKA Cβ: a forgotten catalytic subunit of cAMP-dependent protein kinase opens new windows for PKA signaling and disease pathologies. Biochem J. 2021 Jun 11;478(11):2101-2119. [Content Brief]
- [7]. Søberg K, et al. Evolution of the cAMP-dependent protein kinase (PKA) catalytic subunit isoforms. PLoS One. 2017 Jul 25;12(7):e0181091. [Content Brief]
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PKA Produits associés (202)
Produits associés (202)
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Anticorps (2)
- Sp-8-Br-cAMPS sodium
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Sp-cAMPS
0 ImagesCat. No.: HY-100530BCAS No.: 71774-13-5Sp-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. -
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- PF-4950834
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Taurodeoxycholic acid (Standard)
0 ImagesTaurodeoxycholic acid (Standard) is the analytical standard of Taurodeoxycholic acid. This product is intended for research and analytical applications. Taurodeoxycholate sodium salt is a bile salt-related anionic detergent. Taurodeoxycholic acid is formed in the liver by conjugation of deoxycholate with Taurine (HY-B0351). Taurodeoxycholic acid is used for isolation of membrane proteins including inner mitochondrial membrane proteins. Taurodeoxycholic acid (TDCA) exhibits anti-inflammatory and neuroprotective effects[1][2][3][9][10]. -
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KS-133
0 ImagesKS-133 is a bicyclic peptide with VIPR2 antagonistic activity that can cross the blood-brain barrier. KS-133 selectively blocks VIPR2-mediated Gq/Ca, Gs/cAMP, cAMP/PKA/ERK and PI3K/AKT/GSK3β signaling pathways. KS-133 inhibits VIPR2 agonist-induced CREB phosphorylation in the prefrontal cortex of mice. KS-133 shifts the polarization direction of macrophages toward M1. KS-133 attenuates cancer cell proliferation and reduces the cell cycle distribution level at the S-M phase. KS-133 exerts antitumor effects in a mouse model of colorectal cancer. KS-133 reverses cognitive decline in mouse models of psychiatric disorders. KS-133 can be used for research related to schizophrenia, colorectal cancer and breast cancer. -
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Cerebellin TFA
0 ImagesCat. No.: HY-P1544ACerebellin TFA is a neuromodulatory hexadecapeptide that serves as a marker for Purkinje cell maturation. Cerebellin TFA stimulates norepinephrine release via the adenylate cyclase/PKA-dependent signaling pathway. Cerebellin TFA reduces insulin secretion from pancreatic islets under high-glucose conditions. Cerebellin TFA also regulates synaptic structure formation and controls catecholamine secretion in peripheral tissues. Cerebellin TFA can be used in neurological research. -
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UCN-02
0 ImagesCat. No.: HY-108262CAS No.: 121569-61-7Synonyms: 7-epi-Hydroxystaurosporine -
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BRP TFA
0 ImagesCat. No.: HY-P10927ASynonyms: BRINP2-related peptide TFABRP (BRINP2-related peptide) TFA is a 12-peptide derived from BRINP2 that can cross the blood-brain barrier. BRP TFA induces the central activation of FOS in neuronal cells via the cAMP-PKA-CREB signaling pathway. BRP TFA exerts anorectic and anti-obesity effects without triggering nausea or aversive responses. The action of BRP TFA is independent of the leptin, GLP-1 receptor and melanocortin 4 receptor pathways. BRP TFA is applicable to obesity-related research. -
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- Rhamnose (Standard)
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- STAD 2
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4-Methyloctanoic acid
0 Images4-Methyloctanoic acid is an endogenous branched-chain medium-chain fatty acid and a negative regulator of the cAMP/PKA signaling pathway. 4-Methyloctanoic acid exerts antiepileptic effects by inhibiting epileptiform discharges and terminating behavioral and electroencephalographic seizures. 4-Methyloctanoic acid has neuroprotective effects; its polar metabolites can cross the blood-brain barrier, repair presynaptic release defects, improve motor function and alleviate neuromuscular degeneration in ALS models. 4-Methyloctanoic acid regulates phosphatidylinositol metabolism, reduces PIP/PIP2 levels and increases inositol levels. 4-Methyloctanoic acid can be used in studies related to epilepsy and amyotrophic lateral sclerosis. -
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Kiss2 peptide acetate
0 ImagesCat. No.: HY-P10256AKiss2 peptide acetate is the acetate form of Kiss2 pepride (HY-P10256). Kiss2 peptide acetate is a positive regulator of reproduction. Kiss2 peptide acetate binds with its cognate receptor Kiss2R (GPR54) in COS-7 cells, activates PKA and PKC signaling pathways through Gas and Gaq proteins, and thus enhances the activity of cAMP response element-dependent luciferase (CRE-luc) and serum response element-dependent luciferase (SRE-luc). -
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- Midostaurin-d5
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Taurodeoxycholate-d6 sodium
0 ImagesTaurodeoxycholate-d6 sodium salt is a bile salt-related anionic detergent. Taurodeoxycholate-d6 sodium salt is formed in the liver by conjugation of deoxycholate with Taurine (HY-B0351). Taurodeoxycholate-d6 sodium salt is used for isolation of membrane proteins including inner mitochondrial membrane proteins. Taurodeoxycholate-d6 (TDCA) exhibits anti-inflammatory and neuroprotective effects. -
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Fasudil dihydrochloride
0 ImagesSynonyms: HA-1077 dihydrochloride; AT-877 dihydrochlorideFasudil (HA-1077; AT877) dihydrochloride is a nonspecific RhoA/ROCK inhibitor and also has inhibitory effect on protein kinases, with an Ki of 0.33 μM for ROCK1, IC50s of 0.158 μM and 4.58 μM, 12.30 μM, 1.650 μM for ROCK2 and PKA, PKC, PKG, respectively. Fasudil dihydrochloride is also a potent Ca2+ channel antagonist and vasodilator. -
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Sitagliptin phosphate (Standard)
0 ImagesSynonyms: MK-0431 phosphate (Standard)Sitagliptin (MK-0431) phosphate (Standard) is the analytical standard of Sitagliptin phosphate (HY-13749A). This product is intended for research and analytical applications. Sitagliptin phosphate is an orally active and highly selective DPP4 inhibitor with an IC50 value of 19 nM. Sitagliptin phosphate blocks the degradation of glucagon-like peptide-1 (GLP-1) and glucose-dependent insulinotropic peptide (GIP) by competing inhibition mechanism (Kᵢ = 1 nM), thereby increasing the level of active incretin. Sitagliptin phosphate can also directly stimulate the secretion of GLP-1 by intestinal L cells by activating the cAMP/PKA and ERK1/2 pathways, and this effect is independent of DPP-4. Sitagliptin phosphate shows protective effects on pancreatic islet grafts in 1-type diabetes models. Sitagliptin phosphate can be used for the study of 1-type and 2-type diabetes. -
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Akt1&PKA-IN-1
0 ImagesCat. No.: HY-148868CAS No.: 1334107-58-2Akt1&PKA-IN-1 is a potent dual Akt/PKA inhibitor with IC50 values of 0.03 , 0.11 μM, and 9.8 μM for PKAa, Akt, and CDK2, respectively. Akt1&PKA-IN-1 is selective for cyclin-dependent kinase 2 (CDK2). -
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A-3 hydrochloride
0 ImagesA-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. -
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β-Patchoulene
0 Imagesβ-Patchoulene is an orally active anti-inflammatory, antioxidant, and anti-apoptotic agent. β-Patchoulene inhibits the NF-κB, TLR4, and cAMP/PKA/CREB signaling pathways; activates the Sirt1/Nrf2 and AMPK signaling pathways; and targets Fas/FasL, Caspase-3, ERK1/2, ROCK1/MLC2 for inhibition. β-Patchoulene regulates cytokine secretion, inflammatory cell infiltration, lipid peroxidation, cell polarization, gut microbiota, and lipid metabolism, restores barrier function, mitochondrial function, and cell viability, and exhibits repellent activity against Spodoptera exigua larvae. β-Patchoulene can be used in research related to various inflammatory, ischemic, fibrosis-associated diseases, as well as hepatocellular carcinoma. -
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12(S)-HETrE
0 Images12(S)-HETrE is a fatty acid metabolite that inhibits platelet aggregation. 12(S)-HETrE can be used in thrombosis-related research. -
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