์ฝ˜ํ…์ธ ๋กœ ๊ฑด๋„ˆ๋›ฐ๊ธฐ
Merck

mTORC2-mediated PDHE1ฮฑ nuclear translocation links EBV-LMP1 reprogrammed glucose metabolism to cancer metastasis in nasopharyngeal carcinoma.

Oncogene (2019-02-13)
Jun Zhang, Lin Jia, Tengfei Liu, Yim Ling Yip, Wing Chung Tang, Weitao Lin, Wen Deng, Kwok Wai Lo, Chanping You, Maria Li Lung, Hong Lok Lung, Annie Lai-Man Cheung, Sai Wah Tsao, Chi Man Tsang
์ดˆ๋ก

EBV infection of preinvasive nasopharyngeal epithelium is believed to be an initiation step during pathogenesis of nasopharyngeal carcinoma (NPC), but the mechanisms remain poorly understood. Here we report a novel mechanism driving NPC metastasis through the EBV-encoded LMP1-mediated metabolic reprogramming, via activation of IGF1-mTORC2 signaling and nuclear acetylation of the Snail promoter by the PDHE1ฮฑ, an enzyme involved in glucose metabolism. Mechanistically, EBV-LMP1 increases the cellular secretion of IGF1 which promotes phosphorylation of IGF1R to activate mTORC2/AKT signaling linking glucose metabolism to cell motility. LMP1 expression facilitates translocation of mitochondrial PDHE1ฮฑ into the nucleus in a phosphorylation-dependent manner at Ser293 residue. Functionally, nuclear PDHE1ฮฑ promotes H3K9 acetylation on the Snail promoter to enhance cell motility, thereby driving cancer metastasis. Importantly, the IGF1/mTORC2/PDHE1ฮฑ/Snail axis correlates significantly with disease progression and poor prognosis in NPC patients. This study highlights the functional importance of IGF1-mTORC2-PDHE1ฮฑ signaling mediated by EBV-LMP1 in NPC pathogenesis.

MATERIALS
์ œํ’ˆ ๋ฒˆํ˜ธ
๋ธŒ๋žœ๋“œ
์ œํ’ˆ ์„ค๋ช…

Sigma-Aldrich
2-Deoxy-D-glucose, โ‰ฅ98% (GC), crystalline
Sigma-Aldrich
LY 294002, InSolution, โ‰ฅ98%, 10 mM, reversible and specific inhibitor of PI 3-kinase
Sigma-Aldrich
Oligomycin, A mixture of A, B, and C isomers.