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The Akt-mTOR-S6K pathway is a central intracellular signaling cascade that regulates critical cellular processes including growth, proliferation, survival, and metabolism [1, 14]. It is primarily activated by growth factors and nutrients, which trigger the activation of Akt (Protein Kinase B) [5, 8]. Akt then phosphorylates and inhibits the TSC1/2 complex, relieving the suppression of Rheb and leading to the activation of the Mechanistic Target of Rapamycin Complex 1 (mTORC1) [7, 13]. Activated mTORC1 subsequently phosphorylates downstream effectors such as Ribosomal Protein S6 Kinase (S6K) and 4E-BP1 to promote protein synthesis and cell cycle progression [1, 11]. Dysregulation of this pathway, often through mutations in PI3K, Akt, or loss of the tumor suppressor PTEN, is a hallmark of many human cancers and contributes to metabolic and neurodegenerative disorders [2, 9]. Therapeutic strategies targeting this axis include mTOR inhibitors (rapalogs), Akt inhibitors, and dual PI3K/mTOR inhibitors, which aim to arrest tumor growth and overcome drug resistance [3, 11, 16].
Inhibitors of this pathway typically bind to and inhibit the kinase activity of Akt or mTOR (specifically mTORC1), which prevents the phosphorylation of downstream substrates like S6K and 4E-BP1, leading to the suppression of protein synthesis, cell cycle arrest, and induction of apoptosis.
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