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An Automated Differential Nuclear Staining Assay for Accurate Determination of Mitocan Cytotoxicity
Published on: May 12, 2020
Targeting of mitochondrial fission through natural flavanones elicits anti-myeloma activity
Roberta Torcasio1,2, Maria Eugenia Gallo Cantafio2, Claudia Veneziano1
1Department of Experimental and Clinical Medicine, University Magna Graecia of Catanzaro, Viale Europa, Campus Germaneto, 88100, Catanzaro, Italy.
Background:
Mitochondrial alterations, often dependent on unbalanced mitochondrial dynamics, feature in the pathobiology of human cancers, including multiple myeloma (MM). Flavanones are natural flavonoids endowed with mitochondrial targeting activities. Herein, we investigated the capability of Hesperetin (Hes) and Naringenin (Nar), two aglycones of Hesperidin and Naringin flavanone glycosides, to selectively target Drp1, a pivotal regulator of mitochondrial dynamics, prompting anti-MM activity.
Methods:
Molecular docking analyses were performed on the crystallographic structure of Dynamin-1-like protein (Drp1), using Hes and Nar molecular structures. Cell viability and apoptosis were assessed in MM cell lines, or in co-culture systems with primary bone marrow stromal cells, using Cell Titer Glo and Annexin V-7AAD staining, respectively; clonogenicity was determined using methylcellulose colony assays. Transcriptomic analyses were carried out using the Ion AmpliSeq™ platform; mRNA and protein expression levels were determined by quantitative RT-PCR and western blotting, respectively. Mitochondrial architecture was assessed by transmission electron microscopy. Real time measurement of oxygen consumption was performed by high resolution respirometry in living cells. In vivo anti-tumor activity was evaluated in NOD-SCID mice subcutaneously engrafted with MM cells.
Results:
Hes and Nar were found to accommodate within the GTPase binding site of Drp1, and to inhibit Drp1 expression and activity, leading to hyperfused mitochondria with reduced OXPHOS. In vitro, Hes and Nar reduced MM clonogenicity and viability, even in the presence of patient-derived bone marrow stromal cells, triggering ER stress and apoptosis. Interestingly, Hes and Nar rewired MM cell metabolism through the down-regulation of master transcriptional activators (SREBF-1, c-MYC) of lipogenesis genes. An extract of Tacle, a Citrus variety rich in Hesperidin and Naringin, was capable to recapitulate the phenotypic and molecular perturbations of each flavanone, triggering anti-MM activity in vivo.
Conclusion:
Hes and Nar inhibit proliferation, rewire the metabolism and induce apoptosis of MM cells via antagonism of the mitochondrial fission driver Drp1. These results provide a framework for the development of natural anti-MM therapeutics targeting aberrant mitochondrial dependencies.
Insights
Hesperetin and Naringenin target the mitochondrial fission protein Drp1, inhibiting multiple myeloma (MM) cell growth and inducing apoptosis. These natural compounds offer a promising avenue for developing novel MM therapeutics.
Area of Science:
- Biochemistry
- Molecular Biology
- Cancer Research
Background:
- Mitochondrial dynamics are crucial in cancer pathobiology, particularly in multiple myeloma (MM).
- Flavanones possess mitochondrial targeting capabilities.
- Hesperetin (Hes) and Naringenin (Nar) are natural flavanones with potential anti-MM activity.
Purpose of the Study:
- To investigate the ability of Hes and Nar to target Dynamin-1-like protein (Drp1), a key regulator of mitochondrial dynamics.
- To evaluate the anti-MM activity of Hes and Nar.
- To explore the underlying molecular mechanisms of their action.
Main Methods:
- Molecular docking of Hes and Nar with Drp1.
- Assessment of cell viability, apoptosis, and clonogenicity in MM cells.
- Transcriptomic, mRNA, and protein expression analyses.
- Mitochondrial architecture and oxygen consumption measurements.
- In vivo anti-tumor activity evaluation in mouse models.
Main Results:
- Hes and Nar bind to Drp1, inhibiting its expression and activity, leading to mitochondrial hyperfusion and reduced oxidative phosphorylation.
- Hes and Nar decreased MM cell clonogenicity and viability, inducing apoptosis and ER stress, even in co-culture systems.
- Metabolic rewiring in MM cells via downregulation of lipogenesis transcriptional activators.
- A Citrus extract rich in Hesperidin and Naringin demonstrated similar anti-MM effects in vivo.
Conclusions:
- Hes and Nar inhibit MM cell proliferation and induce apoptosis by antagonizing Drp1.
- These flavanones rewire MM cell metabolism.
- Natural compounds targeting mitochondrial dependencies represent a promising strategy for MM therapy development.
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