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MAPK Signaling

MAPK (mitogen-activated protein kinase) signaling is a crucial pathway that regulates a wide range of cellular processes such as proliferation, differentiation, apoptosis, and response to external stimuli. MAPK signaling is a subcategory within the broader category of signaling pathways, which play a critical role in maintaining cellular homeostasis and coordinating cellular responses to various extracellular signals.

The MAPK signaling pathway involves a series of protein kinases that are activated in response to various stimuli, such as growth factors, stress, and cytokines. These kinases phosphorylate and activate downstream targets, ultimately leading to changes in gene expression and cellular behavior. Dysregulation of MAPK signaling has been implicated in numerous human diseases, including cancer, neurodegenerative disorders, and inflammatory conditions.

Understanding the intricacies of MAPK signaling is essential for developing targeted therapies for these diseases. Researchers are continuously exploring the various components and regulators of the MAPK pathway to identify potential drug targets and develop more effective treatments. Overall, MAPK signaling is a fundamental pathway that plays a crucial role in mediating cellular responses to environmental signals and maintaining cellular homeostasis.

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JX 401, B7140, C21H25NO2S, p38α inhibitor
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PD 198306, B7124, C18H16F3IN2O2, MEK1/2 inhibitor
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CMPD-1, B6962, C22H20FNO2, inhibitor of p38α-mediated MK2a phosphorylation
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SKF 86002 dihydrochloride, B6921, C16H12FN3S·2HCl, p38 MAP kinase inhibitor
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U0124, B6882, C8H10N4S2, Inactive analog of U0126(MEK-1/2 inhibitor), used as a negative control
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KT 5823, B6673, C29H25N3O5, protein kinase G inhibitor
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Anisomycin, B6674, C14H19NO4, JNK agonist, potent and specific
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BMS-582949, B6187, C22H26N6O2, p38 MAPK inhibitor
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Pamapimod (R-1503, Ro4402257), B6188, C19H20F2N4O4, p38 MAPK inhibitor
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PLX7904, B6177, C24H22F2N6O3S, paradox-breaker RAF inhibitor, potent and selective

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