본문으로 건너뛰기
← 뒤로

p53 and fatty acids collaborate to trigger ferroptosis via the FBXO2-FABP5 axis in colorectal cancer.

Redox biology 2026 Vol.90() p. 104043

Tong J, Han T, Deng J, Gan Y, Ruan R, Zhao W, Xiong C, Liao Q, Chen S, Bu H, Xiong J, Zhou X, Hao Q

📝 환자 설명용 한 줄

In colorectal cancer (CRC), p53 can either suppress or potentiate tumor sensitivity to ferroptosis under oxidative stress conditions.

이 논문을 인용하기

BibTeX ↓ RIS ↓
APA Tong J, Han T, et al. (2026). p53 and fatty acids collaborate to trigger ferroptosis via the FBXO2-FABP5 axis in colorectal cancer.. Redox biology, 90, 104043. https://doi.org/10.1016/j.redox.2026.104043
MLA Tong J, et al.. "p53 and fatty acids collaborate to trigger ferroptosis via the FBXO2-FABP5 axis in colorectal cancer.." Redox biology, vol. 90, 2026, pp. 104043.
PMID 41604941

Abstract

In colorectal cancer (CRC), p53 can either suppress or potentiate tumor sensitivity to ferroptosis under oxidative stress conditions. However, it remains to be elucidated how p53 differentially regulates ferroptosis, and whether it can initiate ferroptosis. Our findings reveal that p53 induces ferroptosis in the presence of abundant polyunsaturated fatty acids (PUFAs). FBXO2, which is encoded by a p53-inducible target gene, interacts with FABP5 and promotes the lysosomal degradation of FABP5 through chaperone-mediated autophagy. This results in a decrease in the levels of PUFAs, thereby increasing resistance to ferroptosis in CRC. Notably, the supplementation of arachidonic acid not only reverses p53-mediated ferroptosis resistance, but also coordinates with p53 to initiate ferroptosis independently of additional oxidative stress, effectively suppressing the growth of CRC cells both in vitro and in vivo. Altogether, our study uncovers that the availability of PUFAs is crucial for p53 to exert a pro-ferroptotic function in CRC.

MeSH Terms

Ferroptosis; Humans; Colorectal Neoplasms; Tumor Suppressor Protein p53; Animals; Mice; Cell Line, Tumor; F-Box Proteins; Fatty Acid-Binding Proteins; Gene Expression Regulation, Neoplastic; Autophagy; Fatty Acids

같은 제1저자의 인용 많은 논문 (5)