乳酸脱氢酶A
柠檬酸循环
糖酵解
三羧酸
调节器
化学
下调和上调
生物化学
代谢途径
代谢工程
重编程
细胞生物学
硫辛酸
线粒体
瓦博格效应
乳酸脱氢酶
厌氧糖酵解
磷酸戊糖途径
氧化磷酸化
酶
癌症研究
脱氢酶
新陈代谢
脱氧葡萄糖
乙酰辅酶A
乙酰化
作者
Sheng‐Yan Yin,Guangxia Lv,Lele Ma,Deyu Bu,Huiying Zheng,Jiangshen Guo,Zhen Zhang,Xiaotao Zhang,Ruihua Dong
摘要
Cuproptosis, heavily dependent on copper and mitochondrial tricarboxylic acid (TCA) cycle, can be exploited as a potential oncotherapy. However, the primary metabolic pathway of tumor cells is dependent on glycolysis owing to the overexpression of lactate dehydrogenase A (LDHA), which suppresses high-efficiency cuproptosis oncotherapy. Therefore, inhibiting LDHA to remodel the metabolic pathway of tumor cells could result in sensitizing cuproptosis and, hence, provide a novel strategy to achieve efficient oncotherapy. Accordingly, we herein report a pH-responsive, copper-engineered nanoplatform (ZCIF@GSK) encapsulating the LDHA inhibitor (GSK). ZCIF@GSK initiates the reprogramming of cellular metabolism, thereby achieving efficient cuproptosis. Under the low pH tumor environment, ZCIF@GSK specifically releases GSK to inhibit LDHA. This, in turn, inhibits glycolysis but promotes mitochondrial TCA cycle, to sensitize cuproptosis. Meanwhile, the release kinetics of copper further causes the oligomerization of lipoylated dihydrolipoamide S-acetyltransferase (DLAT) and the downregulation of lipoic acid synthase (LIAS), contributing to efficient cuproptosis. Overall, we propose a novel strategy for sensitizing cuproptosis through an LDHA inhibitor. Additionally, we demonstrate that the inhibition of LDHA upregulates the expression of ferredoxin (FDX1), a key regulator of cuproptosis, further promoting the sensitization of cuproptosis and, hence, a promising cuproptosis-based oncotherapy.
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