ArticleProceedings of the National Academy of Sciences of the United States of America2025
Mechanism of allosteric activation in human mitochondrial ClpP protease.
Article in Proceedings of the National Academy of Sciences of the United States of America, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 9 papers.
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Who cites it
9 citing papers in PubMed.
- Repurposing approved drugs as potential inhibitors of Mycobacterium tuberculosis ClpP: Structure-based virtual screening, molecular dynamics, and in vitro evaluation.Molecular diversity · 2026Article
- Re-evaluating the rationale for targeting oxidative phosphorylation in acute myeloid leukemia.The Biochemical journal · 2026Review
- Structural Analysis of Human LonP1 Protease Bound with the Native Substrate.Life (Basel, Switzerland) · 2026Article
- Molecular mechanisms of mitochondrial AAA+ proteases.The Journal of biological chemistry · 2026Review
- Cryo-EM structures of human ClpXP reveal mechanisms of assembly and proteolytic activation.Nature communications · 2026Article
- Dysregulation of human ClpP using small molecules with piperazine-based scaffold for diffuse intrinsic pontine glioma therapy validated by patient-derived tumor organoids.Research square · 2026Article
- Mitochondrial Protease ClpP: Cancer Marker and Drug Target.Pharmaceuticals (Basel, Switzerland) · 2025Review
- Allosteric regulation of proteolytic machines unveiled by the synergy between cryo-EM and solution NMR spectroscopy.The Biochemical journal · 2025Review
- Cryo-EM structures of human ClpXP reveal mechanisms of assembly and proteolytic activation.bioRxiv : the preprint server for biology · 2024Article
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Authors and funding
13 authors.
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Abstract
Human ClpP protease contributes to mitochondrial protein quality control by degrading misfolded proteins. ClpP is overexpressed in cancers such as acute myeloid leukemia (AML), where its inhibition leads to the accumulation of damaged respiratory chain subunits and cell death. Conversely, hyperactivating ClpP with small-molecule activators, such as the recently discovered ONC201, disrupts mitochondrial protein degradation and impairs respiration in cancer cells. Despite its critical role in human health, the mechanism underlying the structural and functional properties of human ClpP remains elusive. Notably, human ClpP is paradoxically activated by active-site inhibitors. All available structures of human ClpP published to date are in the inactive compact or compressed states, surprisingly even when ClpP is bound to an activator molecule such as ONC201. Here, we present structures of human mitochondrial ClpP in the active extended state, including a pair of structures where ClpP is bound to an active-site inhibitor. We demonstrate that amino acid substitutions in the handle region (A192E and E196R) recreate a conserved salt bridge found in bacterial ClpP, stabilizing the extended active state and significantly enhancing ClpP activity. We elucidate the ClpP activation mechanism, highlighting a hormetic effect where substoichiometric inhibitor binding triggers an allosteric transition that drives ClpP into its active extended state. Our findings link the conformational dynamics of ClpP to its catalytic function and provide high-resolution structures for the rational design of potent and specific ClpP inhibitors, with implications for targeting AML and other disorders with ClpP involvement.
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