Fatty acid-binding protein 5 is a functional biomarker and indicator of ferroptosis in cerebral hypoxia
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Abstract
The progression of human degenerative and hypoxic/ischemic diseases is accompanied by widespread cell death. One death
process linking iron-catalyzed reactive species with lipid peroxidation is ferroptosis, which shows hallmarks of both programmed
and necrotic death in vitro. While evidence of ferroptosis in neurodegenerative disease is indicated by iron accumulation and
involvement of lipids, a stable marker for ferroptosis has not been identified. Its prevalence is thus undetermined in human
pathophysiology, impeding recognition of disease areas and clinical investigations with candidate drugs. Here, we identified
ferroptosis marker antigens by analyzing surface protein dynamics and discovered a single protein, Fatty Acid-Binding Protein 5
(FABP5), which was stabilized at the cell surface and specifically elevated in ferroptotic cell death. Ectopic expression and lipidomics
assays demonstrated that FABP5 drives redistribution of redox-sensitive lipids and ferroptosis sensitivity in a positive-feedback loop,
indicating a role as a functional biomarker. Notably, immunodetection of FABP5 in mouse stroke penumbra and in hypoxic
postmortem patients was distinctly associated with hypoxically damaged neurons. Retrospective cell death characterized here by
the novel ferroptosis biomarker FABP5 thus provides first evidence for a long-hypothesized intrinsic ferroptosis in hypoxia and
inaugurates a means for pathological detection of ferroptosis in tissue.
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Fatty acid-binding protein 5 is a functional biomarker and indicator of ferroptosis in cerebral hypoxia / H. Peng, S. Xin, S. Pfeiffer, C. Müller, J. Merl-Pham, S. M. Hauck, P. N. Harter, D. Spitzer, K. Devraj, B. Varynskyi, Th. Arzberger, S. Momma, J. A. Schick // Cell Death and Disease. - 2024. - Vol. 15, N 4. - Art. 286. - https://doi.org/10.1038/s41419-024-06681-y.