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Published on: January 7, 2019
FAM46C Expression Sensitizes Multiple Myeloma Cells to PF-543-Induced Cytotoxicity
Annarita Miluzio1, Federica De Grossi1,2, Marilena Mancino1
1INGM, Istituto Nazionale Genetica Molecolare Romeo ed Enrica Invernizzi, 20122 Milan, Italy.
Abstract:
FAM46C is a tumor suppressor initially identified in multiple myeloma (MM) but increasingly recognized for its role also in other cancers. Despite its significance, studies exploring the therapeutic potential of FAM46C in combination with targeted treatments remain limited. Sphingosine kinases (SphK1 and SphK2) are key regulators of sphingolipid signaling, a pathway essential for maintaining cell structure and function but frequently deregulated in tumors, making them promising targets for cancer therapy. Preliminary work from our laboratory showed that FAM46C expression synergizes with administration of SKI-I, a pan-inhibitor of sphingosine kinases. In this study, we focused specifically on SphK1, the sphingosine kinase predominantly implicated in cancer and investigated the combinatorial effect of forced FAM46C expression and treatment with PF-543, a selective SphK1 inhibitor. We found that FAM46C overexpression enhances, whereas its downregulation reduces, the cytotoxic efficacy of PF-543 in MM cell lines. Using an in vivo xenograft model, we further validated these findings, showing that FAM46C-expressing MM tumors are indeed sensitive to PF-543 while tumors harboring the D90G loss-of-function variant of FAM46C are not. Overall, our results uncover a novel synergistic interaction between FAM46C expression and SphK1 inhibition, highlighting a promising therapeutic strategy for MM treatment.
Insights
This study reveals that enhancing FAM46C expression boosts the effectiveness of PF-543, a Sphingosine Kinase 1 (SphK1) inhibitor, against multiple myeloma (MM). This combination therapy shows promise for treating MM.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- The tumor suppressor FAM46C is implicated in multiple myeloma (MM) and other cancers.
- Sphingosine kinases (SphK1 and SphK2) regulate sphingolipid signaling, a pathway often deregulated in tumors and a target for cancer therapy.
- Limited research exists on combining FAM46C with targeted cancer treatments.
Purpose of the Study:
- To investigate the synergistic effect of FAM46C expression and SphK1 inhibition using PF-543 in MM.
- To determine if FAM46C influences the sensitivity of MM cells to a selective SphK1 inhibitor.
Main Methods:
- Overexpression and downregulation of FAM46C in MM cell lines.
- Treatment of MM cell lines with PF-543, a selective SphK1 inhibitor.
- Assessment of cytotoxic efficacy in vitro.
- Validation using an in vivo MM xenograft model.
Main Results:
- FAM46C overexpression significantly enhanced the cytotoxic effects of PF-543 in MM cell lines.
- FAM46C downregulation reduced the efficacy of PF-543.
- In vivo studies confirmed that FAM46C-expressing MM tumors were sensitive to PF-543, unlike those with a FAM46C loss-of-function variant.
Conclusions:
- A novel synergistic interaction exists between FAM46C expression and SphK1 inhibition.
- Combining FAM46C expression with SphK1 inhibition represents a potential therapeutic strategy for multiple myeloma.

