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Acetyl-CoA carboxylase 1 controls a lipid droplet–peroxisome axis and is a vulnerability of endocrine-resistant ER+breast cancer

Authors :
Bacci, Marina
Lorito, Nicla
Smiriglia, Alfredo
Subbiani, Angela
Bonechi, Francesca
Comito, Giuseppina
Morriset, Ludivine
El Botty, Rania
Benelli, Matteo
López-Velazco, Joanna I.
Caffarel, Maria M.
Urruticoechea, Ander
Sflomos, George
Malorni, Luca
Corsini, Michela
Ippolito, Luigi
Giannoni, Elisa
Meattini, Icro
Matafora, Vittoria
Havas, Kristina
Bachi, Angela
Chiarugi, Paola
Marangoni, Elisabetta
Morandi, Andrea
Source :
Science Translational Medicine; February 2024, Vol. 16 Issue: 736
Publication Year :
2024

Abstract

Targeting aromatase deprives ER+breast cancers of estrogens and is an effective therapeutic approach for these tumors. However, drug resistance is an unmet clinical need. Lipidomic analysis of long-term estrogen-deprived (LTED) ER+breast cancer cells, a model of aromatase inhibitor resistance, revealed enhanced intracellular lipid storage. Functional metabolic analysis showed that lipid droplets together with peroxisomes, which we showed to be enriched and active in the LTED cells, controlled redox homeostasis and conferred metabolic adaptability to the resistant tumors. This reprogramming was controlled by acetyl-CoA-carboxylase-1 (ACC1), whose targeting selectively impaired LTED survival. However, the addition of branched- and very long–chain fatty acids reverted ACC1 inhibition, a process that was mediated by peroxisome function and redox homeostasis. The therapeutic relevance of these findings was validated in aromatase inhibitor–treated patient-derived samples. Last, targeting ACC1 reduced tumor growth of resistant patient-derived xenografts, thus identifying a targetable hub to combat the acquisition of estrogen independence in ER+breast cancers.

Details

Language :
English
ISSN :
19466234 and 19466242
Volume :
16
Issue :
736
Database :
Supplemental Index
Journal :
Science Translational Medicine
Publication Type :
Periodical
Accession number :
ejs65598905
Full Text :
https://doi.org/10.1126/scitranslmed.adf9874