FTO deficiency in older livers exacerbates ferroptosis during ischaemia/reperfusion injury by upregulating ACSL4 and TFRC

Rong Li(Sun Yat-sen University), Xijing Yan(Sun Yat-sen University), Cuicui Xiao(Sun Yat-sen University), Tingting Wang(Sun Yat-sen University), Xuejiao Li(Sun Yat-sen University), Zhongying Hu(Sun Yat-sen University), Jinliang Liang(Sun Yat-sen University), Jiebin Zhang(Sun Yat-sen University), Jianye Cai(Sun Yat-sen University), Xin Sui(Sun Yat-sen University), Qiuli Liu(Sun Yat-sen University), Manli Wu(Sun Yat-sen University), Jiaqi Xiao(Sun Yat-sen University), Haitian Chen(Sun Yat-sen University), Yasong Liu(Sun Yat-sen University), Chenhao Jiang(Sun Yat-sen University), Guo Lv(Sun Yat-sen University), Guihua Chen(Sun Yat-sen University), Yingcai Zhang(Sun Yat-sen University), Jia Yao(Sun Yat-sen University), Jun Zheng(Sun Yat-sen University), Yang Yang(Sun Yat-sen University)
Nature Communications
June 4, 2024
Cited by 71Open Access
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Abstract

Older livers are more prone to hepatic ischaemia/reperfusion injury (HIRI), which severely limits their utilization in liver transplantation. The potential mechanism remains unclear. Here, we demonstrate older livers exhibit increased ferroptosis during HIRI. Inhibiting ferroptosis significantly attenuates older HIRI phenotypes. Mass spectrometry reveals that fat mass and obesity-associated gene (FTO) expression is downregulated in older livers, especially during HIRI. Overexpressing FTO improves older HIRI phenotypes by inhibiting ferroptosis. Mechanistically, acyl-CoA synthetase long chain family 4 (ACSL4) and transferrin receptor protein 1 (TFRC), two key positive contributors to ferroptosis, are FTO targets. For ameliorative effect, FTO requires the inhibition of Acsl4 and Tfrc mRNA stability in a m6A-dependent manner. Furthermore, we demonstrate nicotinamide mononucleotide can upregulate FTO demethylase activity, suppressing ferroptosis and decreasing older HIRI. Collectively, these findings reveal an FTO-ACSL4/TFRC regulatory pathway that contributes to the pathogenesis of older HIRI, providing insight into the clinical translation of strategies related to the demethylase activity of FTO to improve graft function after older donor liver transplantation.


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