Abstract

Triple-negative breast cancer (TNBC) is the most aggressive subtype of breast cancer, partly due to the lack of targeted therapy available. Cancer cells heavily reprogram their metabolism and acquire metabolic plasticity to satisfy the high-energy demand due to uncontrolled proliferation. Accumulating evidence shows that deregulated lipid metabolism affects cancer cell survival, and therefore we sought to understand the function of fatty acid binding protein 7 (FABP7), which is expressed predominantly in TNBC tissues. As FABP7 was not detected in the TNBC cell lines tested, Hs578T and MDA-MB-231 cells were transduced with lentiviral particles containing either FABP7 open reading frame or red fluorescent protein. During serum starvation, when lipids were significantly reduced, FABP7 decreased the viability of Hs578T, but not of MDA-MB-231, cells. FABP7-overexpressing Hs578T (Hs-FABP7) cells failed to efficiently utilize other available bioenergetic substrates such as glucose to sustain ATP production, which led to S/G2 phase arrest and cell death. We further showed that this metabolic phenotype was mediated by PPAR-α signaling, despite the lack of fatty acids in culture media, as Hs-FABP7 cells attempted to survive. This study provides imperative evidence of metabolic vulnerabilities driven by FABP7 via PPAR-α signaling.

Highlights

  • Triple-negative breast cancer (TNBC) is the most aggressive subtype of breast cancer, partly due to the lack of targeted therapy available

  • The expression of fatty acid binding protein 7 (FABP7) was determined in human breast cancer tissues and TNBC cell lines

  • When the cells were cultured in complete medium for 72 h, there was no difference in cell growth between cells expressing FABP7 and their respective RFP controls (Fig. 2)

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Summary

Introduction

Triple-negative breast cancer (TNBC) is the most aggressive subtype of breast cancer, partly due to the lack of targeted therapy available. Accumulating evidence shows that deregulated lipid metabolism affects cancer cell survival, and we sought to understand the function of fatty acid binding protein 7 (FABP7), which is expressed predominantly in TNBC tissues. Metabolic role of fatty acid binding protein 7 in mediating triple-negative breast cancer cell death via PPAR- signaling. Challenged by hostile environments such as hypoxia and acute interruptions in nutrient availability, cancer cells typically develop metabolic plasticity, which enables the utilization of available nutrients as bioenergetic substrates. This metabolic flexibility allows maintained ATP production under varying physiological and pathological conditions and is primarily regulated by substrate concentration, hormone levels, blood flow, oxygen supply, and workload [6].

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