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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
Proteasome inhibition up-regulates p53 and apoptosis-inducing factor in chondrocytes causing severe growth
Farasat Zaman1, Victoria Menendez-Benito, Emma Eriksson
1Department of Woman and Child Health, Pediatric Endocrinology Unit, Astrid Lindgren Children's Hospital, Stockholm, Sweden. Farasat.Zaman@ki.se
Abstract:
Proteasome inhibitors (PI), a novel class of anticancer drugs, are relatively well tolerated and have recently been introduced into the clinic for the treatment of multiple myeloma. The tumor selectivity and low toxicity of PIs are surprising, given the crucial role of the ubiquitin/proteasome system in a multitude of cellular processes. Here, we show that systemic administration of PIs specifically impairs the ubiquitin/proteasome system in growth plate chondrocytes. Importantly, young mice displayed severe growth retardation during treatment as well as 45 days after the cessation of treatment with clinically relevant amounts of MG262 (0.2 micromol/kg body weight/injection) or bortezomib (1.0 mg/kg body weight/injection). Dysfunction of the ubiquitin/proteasome system was accompanied by the induction of apoptosis of stem-like and proliferative chondrocytes in the growth plate. These results were recapitulated in cultured fetal rat metatarsal bones and chondrocytic cell lines (rat, human). Apoptosis was associated with up-regulation of the proapoptotic molecules, p53 and apoptosis-inducing factor (AIF), both in vitro and in vivo. In addition to the observation that AIF is expressed in the growth plate, we also provide evidence that AIF serves as a direct target protein for ubiquitin, thus explaining its prominent up-regulation upon proteasome inhibition. Suppression of p53 or AIF expression with small interfering RNAs partly rescued chondrocytes from proteasome inhibition-induced apoptosis (35% and 41%, respectively). Our observations show that proteasome inhibition may selectively target essential cell populations in the growth plate causing significant growth failure. These findings could have important implications for the use of proteasome inhibitors in the treatment of childhood cancer.
Insights
Proteasome inhibitors (PIs) can cause severe growth retardation in young mice by damaging growth plate chondrocytes. This occurs through apoptosis, impacting bone development and potentially childhood cancer treatment outcomes.
Area of Science:
- Biochemistry
- Molecular Biology
- Developmental Biology
Background:
- Proteasome inhibitors (PIs) are a novel class of anticancer drugs used for multiple myeloma.
- The ubiquitin/proteasome system is crucial for many cellular processes.
- The tumor selectivity and low toxicity of PIs are surprising given their broad cellular roles.
Purpose of the Study:
- To investigate the specific effects of proteasome inhibitors on the growth plate.
- To determine the impact of PIs on chondrocyte function and apoptosis.
- To explore the molecular mechanisms underlying PI-induced growth plate dysfunction.
Main Methods:
- Systemic administration of PIs (MG262, bortezomib) to young mice.
- In vitro studies using cultured fetal rat metatarsal bones and chondrocytic cell lines.
- Analysis of apoptosis markers (p53, AIF) and proteasome system function.
- Gene silencing using small interfering RNAs (siRNAs) against p53 and AIF.
Main Results:
- Proteasome inhibitors specifically impaired the ubiquitin/proteasome system in growth plate chondrocytes.
- Mice treated with PIs exhibited severe growth retardation, persisting even after treatment cessation.
- PI treatment induced apoptosis in stem-like and proliferative chondrocytes, associated with p53 and AIF upregulation.
- AIF was identified as a direct ubiquitin target, explaining its upregulation.
- Suppression of p53 or AIF partially rescued chondrocytes from PI-induced apoptosis.
Conclusions:
- Proteasome inhibition can selectively target growth plate chondrocytes, leading to significant growth failure.
- The findings have implications for the use of PIs in treating childhood cancers.
- PIs may pose a risk for growth-related side effects in pediatric patients.
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