Date published: 2025-9-20

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AFG3L1 Inhibitors

Chemical inhibitors of AFG3-like AAA ATPase 1 can affect the protein's function through various mechanisms, primarily by altering the mitochondrial environment or by directly inhibiting molecular pathways that are crucial for its activity. Oligomycin A, for instance, directly inhibits mitochondrial ATP synthase, leading to a decrease in ATP production. Since AFG3-like AAA ATPase 1 requires ATP to function, a reduction in ATP levels can inhibit the protein's ATPase activity. Similarly, Concanamycin A affects the protein indirectly by inhibiting V-ATPases, which are essential for maintaining the acidification of intracellular organelles, including mitochondria. The altered pH can affect the functionality of AFG3-like AAA ATPase 1. Another compound, CCCP, disrupts the mitochondrial membrane potential by uncoupling oxidative phosphorylation, which is fundamental for the maintenance of the electrochemical gradient required by mitochondrial proteins, including AFG3-like AAA ATPase 1.

Further affecting the protein's activity, proteasome inhibitors like Epoxomicin, Bortezomib, and MG-132 can lead to the accumulation of misfolded or damaged proteins within the cell, overwhelming the protein degradation pathway that involves AFG3-like AAA ATPase 1. This can indirectly inhibit the protein by preventing it from adequately performing its role in mitochondrial protein quality control. Similarly, mdivi-1, by inhibiting mitochondrial division, can disrupt the regular balance of mitochondrial dynamics, thereby potentially affecting the functional activity of AFG3-like AAA ATPase 1 in the process of mitochondrial maintenance. Other compounds like Alisertib and Parthenolide act more indirectly; Alisertib by inhibiting aurora kinase A which is involved in mitochondrial dynamics, and Parthenolide by inhibiting the NF-kB pathway, which can influence mitochondrial function and maintenance. Lastly, Chloroquine disrupts lysosome acidification and the autophagy process, which is linked to the mitochondrial quality control network that AFG3-like AAA ATPase 1 is a part of, thus affecting the protein's role in mitochondrial maintenance.

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