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Preparation of Mitochondria from Ovarian Cancer Tissues and Control Ovarian Tissues for Quantitative Proteomics Analysis
Published on: November 18, 2019
SPARC Inhibits Metabolic Plasticity in Ovarian Cancer
Christine Naczki1, Bincy John2, Chirayu Patel3
1Departments of Cancer Biology, Wake Forest University School of Medicine, Winston Salem, NC 27157, USA. cmcmahan@wakehealth.edu.
Abstract:
The tropism of ovarian cancer (OvCa) to the peritoneal cavity is implicated in widespread dissemination, suboptimal surgery, and poor prognosis. This tropism is influenced by stromal factors that are not only critical for the oncogenic and metastatic cascades, but also in the modulation of cancer cell metabolic plasticity to fulfill their high energy demands. In this respect, we investigated the role of Secreted Protein Acidic and Rich in Cysteine (SPARC) in metabolic plasticity of OvCa. We used a syngeneic model of OvCa in Sparc-deficient and proficient mice to gain comprehensive insight into the paracrine effect of stromal-SPARC in metabolic programming of OvCa in the peritoneal milieu. Metabolomic and transcriptomic profiling of micro-dissected syngeneic peritoneal tumors revealed that the absence of stromal-Sparc led to significant upregulation of the enzymes involved in glycolysis, TCA cycle, and mitochondrial electron transport chain (ETC), and their metabolic intermediates. Absence of stromal-Sparc increased reactive oxygen species and perturbed redox homeostasis. Recombinant SPARC exerted a dose-dependent inhibitory effect on glycolysis, mitochondrial respiration, ATP production and ROS generation. Comparative analysis with human tumors revealed that SPARC-regulated ETC-signature inversely correlated with SPARC transcripts. Targeting mitochondrial ETC by phenformin treatment of tumor-bearing Sparc-deficient and proficient mice mitigated the effect of SPARC-deficiency and significantly reduced tumor burden, ROS, and oxidative tissue damage in syngeneic tumors. In summary, our findings provide novel insights into the role of SPARC in regulating metabolic plasticity and bioenergetics in OvCa, and shines light on its potential therapeutic efficacy.
Insights
Stromal Secreted Protein Acidic and Rich in Cysteine (SPARC) regulates ovarian cancer (OvCa) metabolism. Its absence boosts cancer cell energy production, while SPARC inhibits it, offering therapeutic potential.
Area of Science:
- Oncology
- Cancer Metabolism
- Molecular Biology
Background:
- Ovarian cancer (OvCa) spreads within the peritoneal cavity, leading to poor outcomes.
- Stromal factors influence OvCa metastasis and metabolic plasticity.
- Secreted Protein Acidic and Rich in Cysteine (SPARC) is a stromal factor investigated for its role in OvCa.
Purpose of the Study:
- To investigate the role of SPARC in regulating the metabolic plasticity of OvCa.
- To understand the paracrine effect of stromal SPARC on OvCa metabolic programming in the peritoneal environment.
Main Methods:
- Utilized a syngeneic OvCa mouse model with Sparc-deficient and proficient mice.
- Performed metabolomic and transcriptomic profiling of peritoneal tumors.
- Assessed the effect of recombinant SPARC and phenformin treatment.
Main Results:
- Absence of stromal Sparc upregulated glycolysis, TCA cycle, and mitochondrial electron transport chain (ETC) enzymes and intermediates.
- Stromal Sparc deficiency increased reactive oxygen species (ROS) and perturbed redox homeostasis.
- SPARC inhibited glycolysis, mitochondrial respiration, ATP production, and ROS generation; SPARC-regulated ETC signature inversely correlated with SPARC transcripts.
- Phenformin treatment targeting mitochondrial ETC reduced tumor burden and oxidative damage.
Conclusions:
- SPARC plays a critical role in modulating OvCa metabolic plasticity and bioenergetics.
- Stromal SPARC deficiency enhances cancer cell metabolism, promoting tumor growth.
- Targeting mitochondrial ETC with phenformin shows therapeutic promise for OvCa.
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