半胱氨酸
谷胱甘肽
半胱氨酸代谢
化学
生物化学
细胞内
细胞
硫醇
药物发现
细胞生物学
化学生物学
蛋白质组学
生物物理学
新陈代谢
HEK 293细胞
生物
细胞代谢
计算生物学
作者
Rachel P. M. Abrams,Rebecca G. Donahue,Jessica Ma,Ying Mao,Morgan E. Diolaiti,Alan Ashworth
标识
DOI:10.1016/j.chembiol.2025.10.006
摘要
Dysregulation of cysteine-dependent processes is implicated in many diseases, including cancer. Despite the importance of cysteine in crucial cellular functions, including protein synthesis, redox balance, and glutathione production, a lack of efficient assays to measure cellular cysteine has limited efforts to identify agents that affect physiological cysteine levels. We employed circular permutation to engineer a fluorescent sensor that changes conformation upon cysteine binding. Biochemical experiments showed that this sensor is selective for cysteine, operating in the 10 μM-10 mM range. To demonstrate the sensor's applicability, we performed high-throughput screens for compounds that reduce cellular cysteine. Liquid chromatography of cell extracts validated the effect of two hit compounds, and mechanistic investigations showed that one was dependent on the anticancer target, xCT. Future application of this sensor in cell biology and drug discovery will advance understanding of cysteine metabolism and drive the development of therapeutics that restore cysteine homeostasis.
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