Fatty acid metabolism in aggressive B-cell lymphoma is inhibited by tetraspanin CD37

Publication date

2022-09-13

Authors

Peeters, Rens
Cuenca-Escalona, Jorge
Zaal, Esther AORCID 0000-0001-9890-7345ISNI 0000000492962943
Hoekstra, Anna T.ISNI 0000000506748594
Balvert, Anouk C.G.
Vidal-Manrique, Marcos
Blomberg, Niek
van Deventer, Sjoerd J.
Stienstra, Rinke
Jellusova, Julia

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Document Type

Article
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Abstract

The importance of fatty acid (FA) metabolism in cancer is well-established, yet the mechanisms underlying metabolic reprogramming remain elusive. Here, we identify tetraspanin CD37, a prognostic marker for aggressive B-cell lymphoma, as essential membrane-localized inhibitor of FA metabolism. Deletion of CD37 on lymphoma cells results in increased FA oxidation shown by functional assays and metabolomics. Furthermore, CD37-negative lymphomas selectively deplete palmitate from serum in mouse studies. Mechanistically, CD37 inhibits the FA transporter FATP1 through molecular interaction. Consequently, deletion of CD37 induces uptake and processing of exogenous palmitate into energy and essential building blocks for proliferation, and inhibition of FATP1 reverses this phenotype. Large lipid deposits and intracellular lipid droplets are observed in CD37-negative lymphoma tissues of patients. Moreover, inhibition of carnitine palmitoyl transferase 1 A significantly compromises viability and proliferation of CD37-deficient lymphomas. Collectively, our results identify CD37 as a direct gatekeeper of the FA metabolic switch in aggressive B-cell lymphoma.

Keywords

General Chemistry, General Biochemistry,Genetics and Molecular Biology, General, General Physics and Astronomy, SDG 3 - Good Health and Well-being

Citation

Peeters, R, Cuenca-Escalona, J, Zaal, E A, Hoekstra, A T, Balvert, A C G, Vidal-Manrique, M, Blomberg, N, van Deventer, S J, Stienstra, R, Jellusova, J, Giera, M, Hannibal, L, Spiekerkoetter, U, ter Beest, M, Berkers, C R & van Spriel, A B 2022, 'Fatty acid metabolism in aggressive B-cell lymphoma is inhibited by tetraspanin CD37', Nature Communications, vol. 13, no. 1, 5371, pp. 1-18. https://doi.org/10.1038/s41467-022-33138-7