GSK-3
Glycogen synthase kinase-3; Glycogen synthase kinase 3
Glycogen synthase kinase 3 (GSK-3) is a multifunctional serine/threonine kinase consisting of two isoforms, alpha and beta. It is a highly conserved negative regulator of receptor tyrosine kinase, cytokine, and Wnt signaling pathways. Stimulation of these pathways inhibits GSK-3 to modulate diverse downstream effectors that include transcription factors, nutrient sensors, glycogen synthesis, mitochondrial function, circadian rhythm, and cell fate. GSK-3 also regulates alternative splicing in response to T-cell receptor activation, and recent phosphoproteomic studies have revealed that multiple splicing factors and regulators of RNA biosynthesis are phosphorylated in a GSK-3-dependent manner.
The malfunction or aberrant activity of GSK-3 leads to several of disorders, such as Alzheimer's disease (AD) and other neurodegenerative pathologies, and other type of diseases as diabetes, cardiovascular disorders and cancer. GSK-3 is also related to innate immune response against pathogens, which makes GSK-3 an excellent target for therapeutic intervention.
GSK-3 Isoform Specific Products
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GSK-3 Inhibitors
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GSK-3 Agonist
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GSK-3 Activators
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GSK-3 Modulators
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GSK-3 Chemicals
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GSK-3 Degraders
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GSK-3 Ligand
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Glycogen Synthase Kinase-3 (GSK-3) Proteins
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GSK-3 alpha Proteins
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GSK-3 beta Proteins
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GSK-3 Related Products (356)
Related Products (356)
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Recombinant Proteins (6)
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Antibodies (9)
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GSK-3 Signaling Pathway
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GSK-3 Isoform Comparison
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CHIR-21208
0 ImagesCat. No.: HY-117198CAS No.: 206275-65-2CHIR-21208 is a highly selective glycogen synthase kinase-3 (GSK-3) inhibitor. CHIR-21208 is promising for research of neurodegenerative disorders like Alzheimer's disease and type 2 diabetes. -
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PJ17
0 ImagesCat. No.: HY-181811CAS No.: 2248983-31-3PJ17 is a potent dual-target inhibitor of AChE and GSK-3β, with IC50 values of 8.84 μM and 4.19 μM, respectively. PJ17 shows no significant neurotoxic effect in primary cerebellar granule neuron cultures. PJ17 serves as a template for the design of multitarget drugs. PJ17 can be used for the research of Alzheimer's disease. -
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Gsk3a Rat Pre-designed siRNA Set A
0 ImagesCat. No.: HY-RS05864Gsk3a Rat Pre-designed siRNA Set A contains three designed siRNAs for Gsk3a gene (Rat), as well as a negative control, a positive control, and a FAM-labeled negative control.
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- Paeoniae radix rubra extract
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6-Me-ATP
0 Images6-Me-ATP (N6-Methyl-ATP) is an N6-modified ATP derivative. 6-Me-ATP exhibits excellent binding affinity for GSK3 and acts as a phosphate group donor for GSK3β-catalyzed phosphorylation of its substrate peptides. 6-Me-ATP is applicable to research related to Alzheimer's disease. -
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GSK3A Human Pre-designed siRNA Set A
0 ImagesCat. No.: HY-RS05862GSK3A Human Pre-designed siRNA Set A contains three designed siRNAs for GSK3A gene (Human), as well as a negative control, a positive control, and a FAM-labeled negative control.
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AJ-4
0 ImagesCat. No.: HY-184742AJ-4 is an orally active, blood-brain barrier-permeable GSK-3β/AChE inhibitor, with an IC50 of 4.7 nM against GSK-3β and 2.97 μM against AChE. AJ-4 increases the level of phosphorylated GSK-3β and reduces the expression of Amyloid-β and phosphorylated Tau. AJ-4 improves scopolamine-induced learning and memory impairment and alleviates hippocampal neuron damage in AD mice. AJ-4 can be used for the research of Alzheimer's disease. -
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GSK-3β inhibitor 21
0 ImagesCat. No.: HY-168079GSK-3β inhibitor 21 (compound 44) is an ATP-competitive GSK-3β inhibitor (IC50=6.06 μM) with anti-amyloid aggregation and tau phosphorylation inhibitory activities. GSK-3β inhibitor 21 can be used in the study of Alzheimer's disease. -
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GSK-3β inhibitor 6
0 ImagesCat. No.: HY-143260CAS No.: 3033944-50-9GSK-3β inhibitor 6 is a potent GSK-3β inhibitor with an IC50 value of 24.4 μM. GSK-3β inhibitor 6 shows high hepatocyte glucose uptake (38%). GSK-3β inhibitor 6 can be used in the research of numerous diseases like diabetes, inflammation, cancer, Alzheimer's disease, and bipolar disorder. -
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Gsk3a Mouse Pre-designed siRNA Set A
0 ImagesCat. No.: HY-RS05863Gsk3a Mouse Pre-designed siRNA Set A contains three designed siRNAs for Gsk3a gene (Mouse), as well as a negative control, a positive control, and a FAM-labeled negative control.
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GSK3-IN-11
0 ImagesCat. No.: HY-116696CAS No.: 681432-07-5GSK3-IN-11 is a Glycogen Synthase Kinase-3 (GSK-3) inhibitor with an IC50 of 5010 nM. -
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GSK3-IN-4
0 ImagesCat. No.: HY-155989CAS No.: 748145-19-9GSK3-IN-4 (compound 0715) is a potent GSK3 inhibitor. GSK3-IN-4 can be used for psychiatric disorder research. -
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GSK3β-IN-3
0 ImagesCat. No.: HY-W098905CAS No.: 301359-45-5GSK3β-IN-3 is an ATP-competitive GSK-3β inhibitor (IC50 = 0.90 μM). GSK3β-IN-3 can reduce the phosphorylation level of tau protein in the BR5706 strain and reduce the deposition of Aβ aggregates in the CL2006 strain, and can be used to research Alzheimer's disease (AD). -
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GSK-3β inhibitor 16
0 ImagesCat. No.: HY-161458GSK-3β inhibitor 16 (compound 7c) is a GSK-3β inhibitor with the IC50 of 4.68 nM. GSK-3β inhibitor 16 decreases Tau hyperphosphorylated aggregate and alleviates cognitive impairments in the Scopolamin (HY-N0296)-induced model in mice. -
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CDK7-IN-20
0 ImagesCat. No.: HY-151878CAS No.: 3034210-97-1 -
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2B-(SP)
0 ImagesCat. No.: HY-P1114CAS No.: 186901-17-72B-(SP) is a eIF2B-based substrate for glycogen synthase kinase-3 (GSK-3). 2B-(SP) is readily phosphorylated by both the α and β isoforms of GSK-3. -
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CHIR-98023
0 ImagesCat. No.: HY-126125CAS No.: 252916-76-0CHIR-98023 is a potent, selective and reversible inhibitor of GSK3, with IC50s of 10 nM and 6.7 nM for GSK3α and GSK3β, respectively. CHIR-98023 can improve insulin action and glucose metabolism. -
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MRT68921 hydrochloride
0 ImagesCat. No.: HY-100006BCAS No.: 2070014-87-6MRT68921 hydrochloride is a potent NUAK1/ULK1 dual inhibitor. MRT68921 hydrochloride inhibits ULK1 and ULK2 with IC50 values of 2.9 nM and 1.1 nM, respectively. MRT68921 hydrochloride can block cells autophagy and kill tumor cells by breaking the balance of oxidative stress signals. MRT68921 hydrochloride can inhibit cell proliferation and induce ROS production and apoptosis. MRT68921 hydrochloride can be used for the research of cancer, such as breast cancer. -
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2B-(SP) TFA
0 ImagesCat. No.: HY-P1114A2B-(SP) TFA is a eIF2B-based substrate for glycogen synthase kinase-3 (GSK-3). 2B-(SP) TFA is readily phosphorylated by both the α and β isoforms of GSK-3. -
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PAV-174
0 ImagesCat. No.: HY-180881PAV-174 is a potent antiviral agent that targets a host protein. PAV-174 prevents Herpes simplex virus (HSV-1) infection in cells (IC50 of 0.02 μM in Vero cells) and human brain organoids. PAV-174 inhibits oxidized macrophage migration inhibitory factor (oxMIF)-induced tau phosphorylation in vitro and in vivo independent of infection. PAV-174 reduces HSV-1-induced tau phosphorylation via the Akt/GSK3β signaling pathway. PAV-174 can be used for Alzheimer’s disease research. -
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Glycogen synthase kinase 3 (GSK-3) is a multifunctional serine/threonine kinase found in all eukaryotes. GSK-3 is one of the few signaling mediators that play central roles in a diverse range of signaling pathways, including those activated by Wnt, PI3K, growth factors, cytokines, and ligands for G protein-coupled receptors. The PI3K pathway is known for regulating metabolism, cell growth, and cell survival. The PI3K activity is stimulated by diverse oncogenes and growth factor receptors. PI3K-mediated production of PIP3 leads to the activation of Akt. The activation of Akt leads to the phosphorylation of GSK-3, which is active in resting cells, but is inactivated by the phosphorylation. The GSK-3 has been linked to the regulation of an assembly of transcription factors, including β-catenin, NF-κB, c-Jun, CREB, and STAT. Thus, the altered activity of GSK-3 causes various effects on cytokine expression.
In the absence of Wnt signaling, β-catenin is phosphorylated by CK1 and GSK-3. This phosphorylation leads to recognition by β-TrCP, leading to the ubiquitylation of β-catenin and degradation by the proteasome. Upon binding of a lipid-modified Wnt protein to the receptor complex, a signaling cascade is initiated. LRP is phosphorylated by CK1/CK2 and GSK-3, and Axin is recruited to the plasma membrane. The kinases in the β-catenin destruction complex are inactivated and β-catenin translocates to the nucleus to form an active transcription factor complex with TCF, leading to transcription of a large set of target genes.
Some endogenous growth factors could bind to and activate the tyrosine kinase receptor. This facilitates the recruitment of other proteins (SHC, SOS), which results in the activation of the ERK-MAPK cascade and the inhibition of GSK-3. GSK-3 exerts many cellular effects: it regulates cytoskeletal proteins, and is important in determining cell survival/cell death. GSK-3 has also been identified as a target for the actions of lithium. GSK-3 can inhibit glycogen synthase, the enzyme that catalyzes the transfer of glucose from UDPG to glycogen[1][2].
Reference:
[1]. Brenner D, et al. Regulation of tumour necrosis factor signalling: live or let die.Nat Rev Immunol. 2015 Jun;15(6):362-74.
[2]. Conrad M, et al. Regulated necrosis: disease relevance and therapeutic opportunities.Nat Rev Drug Discov. 2016 May;15(5):348-66.
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