[No authors listed]
Mammalian STE20-like kinase 1 (MST1) plays an important role in pancreatic cancer progression, but its downstream targets are still unknown. In the present study, our results indicated that MST1 expression was significantly downregulated in pancreatic cancer cell lines (PANCâ1, BxPCâ3 and HPAC) compared with that in the normal ductal epithelial cell line (hTERTâHPNE). Moreover, MST1 overexpression in PANCâ1 cells led to increased apoptosis as determined by MTT and TUNEL assays and inhibited cellular migration. Mechanistically, upregulation of MST1 expression caused mitochondrial dysfunction, decreased ATP production, and activation of the mitochondrialâdependent apoptotic pathway via inhibition of mitofusin 2 (Mfn2)âmediated mitophagy, which ultimately resulted in increased cellular apoptosis and decreased cellular migration. Collectively, the present study demonstrated that MST1 may regulate pancreatic cancer PANCâ1 cell survival, invasion and migration through Mfn2âmediated mitophagy, laying the foundation for the exploration of novel therapeutic targets for pancreatic cancer.
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