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Published on: May 15, 2019
Actinomycin D and bortezomib disrupt protein homeostasis in Wilms tumor
Patricia D B Tiburcio1, Kenian Chen2, Lin Xu1,2
1Department of Pediatrics, University of Texas Southwestern Medical Center, Dallas, TX.
Abstract:
Wilms tumor is the most common kidney cancer in children, and diffuse anaplastic Wilms tumor is the most chemoresistant histological subtype. Here, we explore how Wilms tumor cells evade the common chemotherapeutic drug actinomycin D, which inhibits ribosomal RNA biogenesis. Using ribosome profiling, protein arrays, and a genome-wide knockout screen, we describe how actinomycin D disrupts protein homeostasis and blocks cell cycle progression. We found that, when ribosomal capacity is limited by actinomycin D treatment, anaplastic Wilms tumor cells preferentially translate proteasome components and upregulate proteasome activity. Based on these findings, we tested whether the proteasome inhibitor bortezomib sensitizes cells to actinomycin D treatment. Indeed, we found that the combination induces apoptosis both in vitro and in vivo and prolongs survival in xenograft models. Lastly, we show that increased levels of proteasome components are associated with anaplastic histology and worse prognosis in Wilms tumor patients. In sum, maintaining protein homeostasis is critical for Wilms tumor proliferation, and it can be therapeutically disrupted by blocking protein synthesis or turnover.
Insights
Anaplastic Wilms tumor cells resist chemotherapy by boosting protein disposal. Combining protein synthesis inhibitors with proteasome inhibitors induces cancer cell death and improves survival in models.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Wilms tumor is a common pediatric kidney cancer.
- Diffuse anaplastic Wilms tumor is a chemoresistant subtype.
- Actinomycin D inhibits ribosomal RNA biogenesis, a target for cancer therapy.
Purpose of the Study:
- To investigate how Wilms tumor cells evade actinomycin D treatment.
- To identify therapeutic strategies to overcome chemoresistance in anaplastic Wilms tumor.
Main Methods:
- Ribosome profiling
- Protein arrays
- Genome-wide knockout screens
- In vitro and in vivo experiments
- Analysis of patient data
Main Results:
- Actinomycin D disrupts protein homeostasis and cell cycle progression.
- Anaplastic Wilms tumor cells upregulate proteasome activity to counteract actinomycin D.
- Combined treatment with bortezomib (proteasome inhibitor) and actinomycin D induces apoptosis and prolongs survival.
- Increased proteasome component levels correlate with anaplastic histology and poor prognosis.
Conclusions:
- Maintaining protein homeostasis is crucial for Wilms tumor proliferation.
- Therapeutic strategies targeting protein synthesis and turnover can overcome chemoresistance.
- Combination therapy holds promise for treating chemoresistant Wilms tumor.
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