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Updated: May 9, 2025

Detection of Mitochondria Membrane Potential to Study CLIC4 Knockdown-induced HN4 Cell Apoptosis In Vitro
Published on: July 17, 2018
The mitochondrial protease ClpP is a metabolic vulnerability and an immunogenic trigger against multiple myeloma
Tommaso Perini1,2, Paola Zordan3, Rossella Del Pizzo1
1Age Related Diseases Unit, Division of Genetics and Cell Biology, IRCCS Ospedale San Raffaele, Milan, Italy.
Abstract:
Orchestrating key homeostatic functions, mitochondria likely entail cancer vulnerabilities. Moreover, because of their bacterial ancestry, they can release potent immunogenic signals. In this study, we showed that the mitochondrial protease caseinolytic peptidase P (ClpP) is both a cell-intrinsic metabolic vulnerability and an actionable immunogenic trigger in multiple myeloma (MM). We found that ClpP messenger RNA is higher in bone marrow (BM)-purified malignant plasma cells than in normal or premalignant counterparts and that MM lines rank first in ClpP expression among human cancers. Moreover, we demonstrated that human MM cells are highly vulnerable to ClpP inhibition in vitro and in vivo. Surprisingly, MM cell dependence on ClpP was not accounted for by its acknowledged oxidative phosphorylation surveillance activity. Proteomic discovery of proteolytic targets, metabolomics, and metabolic tracing identified a critical control exerted by ClpP on ornithine aminotransferase abundance to sustain cytosolic biosynthesis of polyamines, which are essential for MM cells. Transcriptomics and targeted validation also revealed the activation of a cyclic GMP-AMP synthase (cGAS)-dependent type I interferon (IFN) response in ClpP-silenced MM cells, whose supernatants boosted dendritic cell activation and ability to stimulate IFN-γ production by T cells. In vivo, ClpP silencing reshaped the BM immune environment in immunocompetent mice by significantly expanding IFN-γ-producing CD4+ and CD8+ T cells and CD4+ T memory cells, while containing exhausted CD4+ T cells and myeloid-derived suppressor cells. Thus, ClpP is a newly identified addiction of MM cells whose inhibition not only exerts cell-intrinsic toxicity but also triggers otherwise indolent antitumoral immunity. Our findings yield a novel immunogenic chemotherapeutic framework with potential relevance to myeloma.
Insights
The mitochondrial protease ClpP is a key vulnerability in multiple myeloma (MM). Inhibiting ClpP kills cancer cells and activates anti-tumor immunity, offering a new therapeutic strategy for MM.
Area of Science:
- Mitochondrial biology
- Cancer immunology
- Metabolic pathways
Background:
- Mitochondria play crucial roles in cellular homeostasis and can trigger immune responses.
- The mitochondrial protease ClpP is implicated in cancer vulnerabilities and immune signaling.
Purpose of the Study:
- To investigate the role of ClpP as a metabolic vulnerability and immunogenic trigger in multiple myeloma (MM).
- To explore the therapeutic potential of ClpP inhibition in MM.
Main Methods:
- Analysis of ClpP mRNA expression in malignant plasma cells (PC) and MM cell lines.
- In vitro and in vivo studies assessing the effects of ClpP inhibition on MM cells.
- Proteomics, metabolomics, and metabolic tracing to identify ClpP targets.
- Transcriptomics and validation to assess immune responses.
- In vivo studies in immunocompetent mice to evaluate immune microenvironment changes.
Main Results:
- ClpP expression is significantly higher in MM cells compared to normal or premalignant cells.
- MM cells exhibit high vulnerability to ClpP inhibition, independent of oxidative phosphorylation.
- ClpP regulates polyamine biosynthesis via ornithine aminotransferase.
- ClpP inhibition activates a cGAS-dependent type-I interferon (IFN-I) response, enhancing dendritic cell and T cell activation.
- In vivo ClpP silencing promotes anti-tumor immunity by expanding effector T cells and reducing suppressive immune cells in the bone marrow.
Conclusions:
- ClpP is a critical metabolic addiction in MM cells.
- ClpP inhibition induces both direct anti-myeloma toxicity and potent anti-tumor immune responses.
- Targeting ClpP presents a novel immunogenic chemotherapeutic strategy for multiple myeloma.
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