Activation of <i>SAT1</i> engages polyamine metabolism with p53-mediated ferroptotic responses

Yang Ou(Cancer Genetics (United States)), Shang-Jui Wang(Cancer Genetics (United States)), Dawei Li(Cancer Genetics (United States)), Bo Chu(Cancer Genetics (United States)), Wei Gu(Cancer Genetics (United States))
Proceedings of the National Academy of Sciences
October 3, 2016
Cited by 747Open Access
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Abstract

-acetyltransferase 1) gene as a transcription target of p53. SAT1 is a rate-limiting enzyme in polyamine catabolism critically involved in the conversion of spermidine and spermine back to putrescine. Surprisingly, we found that activation of SAT1 expression induces lipid peroxidation and sensitizes cells to undergo ferroptosis upon reactive oxygen species (ROS)-induced stress, which also leads to suppression of tumor growth in xenograft tumor models. Notably, SAT1 expression is down-regulated in human tumors, and CRISPR-cas9-mediated knockout of SAT1 expression partially abrogates p53-mediated ferroptosis. Moreover, SAT1 induction is correlated with the expression levels of arachidonate 15-lipoxygenase (ALOX15), and SAT1-induced ferroptosis is significantly abrogated in the presence of PD146176, a specific inhibitor of ALOX15. Thus, our findings uncover a metabolic target of p53 involved in ferroptotic cell death and provide insight into the regulation of polyamine metabolism and ferroptosis-mediated tumor suppression.


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