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The **cystine-glutamate antiporter (System xc-)** is a heterodimeric membrane transporter composed of the light chain SLC7A11 (xCT) and the heavy chain SLC3A2. It belongs to the heteromeric amino acid transporter family (SLC7) and functions as a Na+-independent, chloride-dependent, 1:1 antiporter, exchanging extracellular cystine for intracellular glutamate across the plasma membrane[4][7][2][3]. Imported cystine is reduced to cysteine, the rate-limiting precursor for the synthesis of the antioxidant glutathione (GSH), supporting cellular redox homeostasis and protecting against oxidative stress[4][2][8]. System xc- is overexpressed in numerous cancers, contributing to tumor growth, resistance to therapy, and adaptation to oxidative environments, thus serving as a promising therapeutic target in oncology and neuroprotection[9][8][2][5]. Due to its role in nonvesicular release of glutamate, it also influences neurotransmission and excitotoxicity in the central nervous system. Pharmacological inhibition of this transporter can trigger oxidative stress-induced cell death (ferroptosis), but chronic blockade may risk CNS toxicity or impaired immune function[4][5][9].
Competitive inhibition of cystine uptake (e.g., sulfasalazine, erastin block transporter) Induction of ferroptosis by preventing cystine import and GSH synthesis (e.g., erastin, sorafenib) Modulation of extracellular glutamate concentration (affecting excitotoxicity/neurotransmission)
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