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Kaempferol impairs aerobic glycolysis against melanoma metastasis via inhibiting the mitochondrial binding of HK2 and VDAC1

Authors :
Xiuqin Zheng
Yanhong Pan
Gejun Yang
Yang Liu
Jueyao Zou
Han Zhao
Gang Yin
Yuanyuan Wu
Xiaoman Li
Zhonghong Wei
Suyun Yu
Yang Zhao
Aiyun Wang
Wenxing Chen
Yin Lu
Source :
European journal of pharmacology. 931
Publication Year :
2022

Abstract

Metastasis is the leading cause of death in melanoma patients. Aerobic glycolysis is a common metabolic feature in tumor and is closely related to cell growth and metastasis. Kaempferol (KAM) is one of the active ingredients in the total flavonoids of Chinese traditional medicine Sparganii Rhizoma. Studies have shown that it interferes with the cell cycle, apoptosis, angiogenesis and metastasis of tumor cells, but whether it can affect the aerobic glycolysis of melanoma is still unclear. Here, we explored the effects and mechanisms of KAM on melanoma metastasis and aerobic glycolysis. KAM inhibited the migration and invasion of A375 and B16F10 cells, and reduced the lung metastasis of melanoma cells. Extracellular acidification rates (ECAR) and glucose consumption were obviously suppressed by KAM, as well as the production of ATP, pyruvate and lactate. Mechanistically, the activity of hexokinase (HK), the first key kinase of aerobic glycolysis, was significantly inhibited by KAM. Although the total protein expression of HK2 was not significantly changed, the binding of HK2 and voltage-dependent anion channel 1 (VDAC1) on mitochondria was inhibited by KAM through AKT/GSK-3β signal pathway. In conclusion, KAM inhibits melanoma metastasis via blocking aerobic glycolysis of melanoma cells, in which the binding of HK2 and VDAC1 on mitochondria was broken.

Details

ISSN :
18790712
Volume :
931
Database :
OpenAIRE
Journal :
European journal of pharmacology
Accession number :
edsair.doi.dedup.....e95db2f4d17c7ae77fe0893c3a0c842c