Target intelligence / Profile preview

Caseinolytic protease P (ClpP) (ClpP)

Target
ClpP
Molecular classification
Enzyme, Serine protease, Mitochondrial protease, AAA+ protease system
01

Overview

Caseinolytic protease P (ClpP) is a highly conserved serine protease located within the mitochondria of eukaryotic cells and the cytoplasm of most bacteria. It typically assembles into a barrel-shaped tetradecameric complex that works in tandem with AAA+ ATPases, such as ClpX or ClpC, to recognize, unfold, and degrade misfolded or damaged proteins (UniProt, 2024). In the context of drug discovery, ClpP has emerged as a significant target for both oncology and infectious diseases. In cancer, particularly acute myeloid leukemia and glioblastoma, small molecules known as imipridones (e.g., ONC201) allosterically activate human ClpP, triggering an integrated stress response and the degradation of respiratory chain proteins, which leads to tumor cell apoptosis (Ishizawa et al., 2019; PubMed). Conversely, in microbiology, acyldepsipeptides (ADEPs) target bacterial ClpP to cause lethal, non-specific protein degradation, making it a promising target for treating multidrug-resistant infections like Staphylococcus aureus and Mycobacterium tuberculosis (Brotz-Oesterhelt et al., 2005; Nature Medicine).

Other names
ATP-dependent Clp protease proteolytic subunitEndopeptidase ClpMitochondrial Caseinolytic Protease PCLPP
02

Mechanism of action

Allosteric activation of the ClpP proteolytic core leads to uncontrolled degradation of essential proteins (in bacteria) or mitochondrial respiratory chain subunits (in humans), resulting in metabolic collapse and cell death. Some inhibitors act by blocking the interaction between ClpP and its cognate AAA+ chaperones (e.g., ClpX or ClpC1).

03

Biological functions

Protein degradationMitochondrial proteostasisUnfolded protein responseStress responseMetabolic regulation
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Disease associations

CancerInfectionAcute myeloid leukemiaGlioblastomaTuberculosisNeurodegenerative disease
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Safety considerations

Mitochondrial toxicityCardiotoxicity (potential due to high mitochondrial density in heart)HepatotoxicityAcquired resistance through CLPP mutationsOff-target effects on non-cancerous metabolic tissues
06

Interacting drugs

ONC201 (Imipridone)

7 more in the full profile.

07

Biomarkers

CLPP expression levelsATF4 protein inductionCHOP expressionMitochondrial DNA (mtDNA) depletionSDHB protein reduction

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