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LC3B upregulation by NANOG promotes immune resistance and stem-like property through hyperactivation of EGFR signaling in immune-refractory tumor cells

Authors
Kim, SuyeonCho, HanbyoulHong, Soon-OhOh, Se JinLee, Hyo-JungCho, EunhoWoo, Seon RangSong, Joon SeonChung, Joon-YongSon, Sung WookYoon, Sang MinJeon, Yu-MinJeon, SeunghyunYee, CassianLee, Kyung-MiHewitt, Stephen M.Kim, Jae-NoonSong, Kwon-HoKim, Tae Woo
Issue Date
2021
Publisher
TAYLOR & FRANCIS INC
Keywords
Cancer immunoediting; EGFR; immune resistance; immunotherapy; LC3B; MAP1LC3B; NANOG
Citation
AUTOPHAGY, v.17, no.8, pp.1978 - 1997
Indexed
SCIE
SCOPUS
Journal Title
AUTOPHAGY
Volume
17
Number
8
Start Page
1978
End Page
1997
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/130228
DOI
10.1080/15548627.2020.1805214
ISSN
1554-8627
Abstract
Immune selection drives tumor cells to acquire refractory phenotypes. We previously demonstrated that cytotoxic T lymphocyte (CTL)-mediated immune pressure enriches NANOG(+)tumor cells with stem-like and immune-refractory properties that make them resistant to CTLs. Here, we report that the emergence of refractory phenotypes is highly associated with an aberrant macroautophagic/autophagic state of the NANOG(+)tumor cells and that the autophagic phenotype arises through transcriptional induction ofMAP1LC3B/LC3Bby NANOG. Furthermore, we found that upregulation of LC3B expression contributes to an increase in EGF secretion. The subsequent hyperactivation of EGFR-AKT signaling rendered NANOG(+)tumor cells resistant to CTL killing. The NANOG-LC3B-p-EGFR axis was preserved across various types of human cancer and correlated negatively with the overall survival of cervical cancer patients. Inhibition of LC3B in immune-refractory tumor models rendered tumors susceptible to adoptive T-cell transfer, as well as PDCD1/PD-1 blockade, and led to successful, long-term control of the disease. Thus, our findings demonstrate a novel link among immune-resistance, stem-like phenotypes, and LC3B-mediated autophagic secretion in immune-refractory tumor cells, and implicate the LC3B-p-EGFR axis as a central molecular target for controlling NANOG(+)immune-refractory cancer.
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