Date published: 2025-10-28

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C9orf79 Inhibitors

Inhibition of C9orf79 can be achieved through the modulation of various signaling pathways and cellular processes to which this protein is connected. Compounds that inhibit kinases could impede phosphorylation events, potentially affecting C9orf79's role in signal transduction and leading to its functional inhibition. For instance, targeting key components of the MAPK/ERK and PI3K signaling cascades can alter cellular responses to cytokines and stress, which may indirectly influence C9orf79's activity. Similarly, inhibition of mTOR signaling can suppress translation regulation mechanisms that might involve this protein. Additionally, specific inhibition of protein kinases such as EGFR tyrosine kinase could interfere with downstream signaling, affecting proliferation processes possibly associated with C9orf79.

Inhibitors that target other kinases, like JNK, involved in apoptosis, or ROCK, which affects cytoskeleton organization, could also lead to the suppression of C9orf79 activity if it is linked to these cellular processes. The disturbance of cell cycle regulation by inhibiting Aurora kinases may further impact C9orf79 function, assuming its involvement in cell cycle control. Beyond kinase inhibition, regulating cell survival and proliferation pathways through compounds that target signaling proteins like AKT can also result in the indirect inhibition of C9orf79.

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