Date published: 2025-10-12

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TTC25 Inhibitors

TTC25 inhibitors like compounds such as Roscovitine and Paclitaxel target cell cycle regulators and microtubule dynamics, respectively. If TTC25 is involved in cell cycle progression or microtubule-based processes, these inhibitors can alter its function. Similarly, Nocodazole's ability to depolymerize microtubules can affect TTC25 if its role is tied to the structural integrity of the cytoskeleton. Inhibitors like Lithium chloride and SB216763, which target GSK-3 and thereby modulate Wnt signaling, can influence TTC25 if it is part of this signaling cascade. Epigenetic modifiers such as 5-Azacytidine and Trichostatin A can lead to changes in gene expression patterns, which may include TTC25, thus affecting its abundance and function. Compounds like MG132 can affect the stability and turnover of proteins, including TTC25 if it is subject to proteasomal degradation.

Brefeldin A's impact on Golgi apparatus function can also have implications for TTC25 if it is involved in protein trafficking. 2-Deoxy-D-glucose, by inhibiting glycolysis, can change the energy balance within cells, which can affect proteins that are involved in energy-dependent processes. Chlorpromazine's role as a calmodulin antagonist can alter calcium signaling pathways, potentially affecting TTC25 if it is calcium-dependent. Rapamycin can have broad effects on cell growth and metabolism, which can impact TTC25 if it is involved in nutrient-sensing or growth regulatory pathways.

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