2019•Cancer ResearchRequires access

Abstract 3603: Sphingomyelin synthase inhibition in sarcomas results in ceramide accumulation and apoptosis

Jared James Barrott, Trevor Meldrum, Farjana Afrin, Srinath Pashikanti

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Abstract

Abstract Sphingolipid metabolism is critical to cellular homeostasis especially as cells undergo mitosis. It is, therefore, unsurprising that the sphingolipid pathway is upregulated in a number of a cancers. Sphingoid bases such as sphingosine and ceramide are rapidly synthesized to provide the building blocks of other sphingolipids. Inhibition of downstream enzymes that convert sphingosine and ceramide into sphingolipids can lead to an increase of ceramide, which results in cellular toxicity and initiation of apoptosis. Using the marine natural product Jaspine B and chemically synthesized analogues, we investigated the potency of inhibiting sphingomyelin synthase in sarcoma cell lines. Sphingomyelin synthase is a downstream enzyme that converts ceramide into sphingomyelin by adding the polar head group phosphorylcholine to ceramide. Jaspine B and its analogues exhibited submicromolar potency against several human sarcoma cell lines. It was determined that the inhibition of sphingomyelin synthase resulted in an increase in ceramide and sphingosine levels and that sphingomyelinase enzymatic activity increased. While the mitochondria mass remained the same, the membrane potential of the mitochondria was significantly affected by the presence of the inhibitors. In conclusion, inhibitors of sphingolipid metabolism are viable therapeutic options with high untapped potential to treat cancer. Citation Format: Jared J. Barrott, Trevor Meldrum, Farjana Afrin, Srinath Pashikanti. Sphingomyelin synthase inhibition in sarcomas results in ceramide accumulation and apoptosis [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2019; 2019 Mar 29-Apr 3; Atlanta, GA. Philadelphia (PA): AACR; Cancer Res 2019;79(13 Suppl):Abstract nr 3603.

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Abstract Sphingolipid metabolism is critical to cellular homeostasis especially as cells undergo mitosis. It is, therefore, unsurprising that the sphingolipid pathway is upregulated in a number of a cancers. Sphingoid bases such as sphingosine and ceramide are rapidly synthesized to provide the building blocks of other sphingolipids. Inhibition of downstream enzymes that convert sphingosine and ceramide into sphingolipids can lead to an increase of ceramide, which results in cellular toxicity and initiation of apoptosis. Using the marine natural product Jaspine B and chemically synthesized analogues, we investigated the potency of inhibiting sphingomyelin synthase in sarcoma cell lines. Sphingomyelin synthase is a downstream enzyme that converts ceramide into sphingomyelin by adding the polar head group phosphorylcholine to ceramide. Jaspine B and its analogues exhibited submicromolar potency against several human sarcoma cell lines. It was determined that the inhibition of sphingomyelin synthase resulted in an increase in ceramide and sphingosine levels and that sphingomyelinase enzymatic activity increased. While the mitochondria mass remained the same, the membrane potential of the mitochondria was significantly affected by the presence of the inhibitors. In conclusion, inhibitors of sphingolipid metabolism are viable therapeutic options with high untapped potential to treat cancer. Citation Format: Jared J. Barrott, Trevor Meldrum, Farjana Afrin, Srinath Pashikanti. Sphingomyelin synthase inhibition in sarcomas results in ceramide accumulation and apoptosis [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2019; 2019 Mar 29-Apr 3; Atlanta, GA. Philadelphia (PA): AACR; Cancer Res 2019;79(13 Suppl):Abstract nr 3603.

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Available abstract

Abstract Sphingolipid metabolism is critical to cellular homeostasis especially as cells undergo mitosis. It is, therefore, unsurprising that the sphingolipid pathway is upregulated in a number of a cancers. Sphingoid bases such as sphingosine and ceramide are rapidly synthesized to provide the building blocks of other sphingolipids. Inhibition of downstream enzymes that convert sphingosine and ceramide into sphingolipids can lead to an increase of ceramide, which results in cellular toxicity and initiation of apoptosis. Using the marine natural product Jaspine B and chemically synthesized analogues, we investigated the potency of inhibiting sphingomyelin synthase in sarcoma cell lines. Sphingomyelin synthase is a downstream enzyme that converts ceramide into sphingomyelin by adding the polar head group phosphorylcholine to ceramide. Jaspine B and its analogues exhibited submicromolar potency against several human sarcoma cell lines. It was determined that the inhibition of sphingomyelin synthase resulted in an increase in ceramide and sphingosine levels and that sphingomyelinase enzymatic activity increased. While the mitochondria mass remained the same, the membrane potential of the mitochondria was significantly affected by the presence of the inhibitors. In conclusion, inhibitors of sphingolipid metabolism are viable therapeutic options with high untapped potential to treat cancer. Citation Format: Jared J. Barrott, Trevor Meldrum, Farjana Afrin, Srinath Pashikanti. Sphingomyelin synthase inhibition in sarcomas results in ceramide accumulation and apoptosis [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2019; 2019 Mar 29-Apr 3; Atlanta, GA. Philadelphia (PA): AACR; Cancer Res 2019;79(13 Suppl):Abstract nr 3603.

Key concepts: Ceramide, Sphingolipid, Sphingomyelin, Sphingosine, Ceramide synthase, Sphingomyelin phosphodiesterase, Biology, Apoptosis

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