Depending on cellular state and stress cues, TP53 can promote ferroptosis by repressing SLC7A11 to limit cystine uptake and GSH synthesis, inducing spermidine/spermine N1-acetyltransferase 1 ( SAT1 ) to enhance ROS generation through polyamine catabolism, and upregulating glutaminase 2 ( GLS2 ) to increase -ketoglutarate production and mitochondrial ROS 154-156
Assays of stroma and thylakoid fractions showed no detectable GCL and GS activity in the lumen (unpublished data)
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Delton Family Distinguished Professor in Organic Chemistry, and Joshua Munger, professor in the Department of Biochemistry and Biophysics and an expert in cancer cell metabolismare exploring ways to refine potential drugs that could inhibit this process and improve outcomes for patients
Progression of coronary artery disease (CAD) from stable angina (SA) towards myocardial infarction (MI): role of oxidative stress
10.1038/srep16339 Sci Rep