ACS Medicinal Chemistry Letters · 2022 · 18 citations · 12 references
Autophagy plays essential roles in a wide variety of physiological processes, such as cellular homeostasis, metabolism, development, differentiation, and immunity. Selective pharmacological modulation of autophagy is considered a valuable potential therapeutic approach to treat diverse human diseases. However, development of such therapies has been greatly impeded by the lack of specific small molecule autophagy modulators. Here, we performed structure-activity relationship studies on a previously discovered weak Bcl-2 inhibitor SW076956, and developed a panel of small molecule compounds that selectively released Bcl-2-mediated inhibition of autophagy-related Beclin 1 compared to apoptosis-related Bax at nanomolar concentration. Our NMR analysis showed that compound <b>35</b> directly binds Bcl-2 and specifically inhibits the interaction between the Bcl-2 and Beclin 1 BH3 domains without disruption of the Bcl-2-Bax BH3 interaction. More broadly, this proof-of-concept study demonstrates that targeting protein-protein interactions of the intrinsic autophagy regulatory network can serve as a valuable strategy for the development of autophagy-based therapeutics.
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Autophagy in the Pathogenesis of Disease
Beth Levine, Guido Kroemer · Cell · 2008 · 6.9K citations · Full text
Bcl-2 family members: Dual regulators of apoptosis and autophagy
Beth Levine, Sangita C. Sinha, Guido Kroemer · Autophagy · 2008 · 803 citations · Full text
Disruption of the beclin 1–BCL2 autophagy regulatory complex promotes longevity in mice
Álvaro F. Fernández, Salwa Sebti, Yongjie Wei et al. · Nature · 2018 · 625 citations · Full text