Hypoxia-driven hif-1α activation reprograms pre-activated nk cells towards highly potent effector phenotypes via erk/stat3 pathways

  • Lim, Seon Ah; 
  • Moon, Yunwon; 
  • Shin, Min Hwa; 
  • Kim, Tae-Jin; 
  • Chae, Sehyun; 
  • ... Lee, Kyung-Mi; 
  • 외 3명
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초록

NK cells are the predominant innate lymphocyte subsets specialized to kill malignant tumor cells. In patients with advanced cancer, hypoxic stress shapes NK cells toward tumor-resistant and im-munosuppressive phenotypes, hence a strategy to restore NK function is critical for successful tumor immunotherapy. Here, we present evidence that pre-activation and subsequent HIF-1α-dependent metabolic shift of NK cells from oxidative phosphorylation into glycolysis are keys to overcome hypoxia-mediated impairment in NK cell survival, proliferation, and tumor cytotoxicity. Specifically, exposing NK cells to 7–9 days of normoxic culture followed by a pO2 of 1.5% hypoxia led to a highly potent effector phenotype via HIF-1α stabilization and upregulation of its target genes, BNIP3, PDK1, VEGF, PKM2, and LDHA. RNA sequencing and network analyses revealed that concomitant reduc-tion of p21/p53 apoptotic pathways along with upregulation of cell cycle-promoting genes, CCNE1, CDC6, CDC20, and downregulation of cell cycle-arrest genes, CDKN1A, GADD45A, and MDM2 were accountable for superior expansion of NK cells via ERK/STAT3 activation. Furthermore, HIF-1α-dependent upregulation of the NKp44 receptor in hypoxia-exposed NK cells resulted in increased killing against K562, CEM, and A375 tumor targets both in-vitro and in-vivo tumor clearance assays. Therefore, hypoxic exposure on pre-activated proliferating NK cells triggered HIF-1α-dependent pathways to initiate coordinated regulation of cell cycle, apoptosis, and cytotoxicity at the global. Copyright: © 2021 by the authors. Licensee MDPI, Basel, Switzerland.

키워드

HIF-1/ERK/STAT3; Hypoxia; NK cells; Tumor microenvironment; hypoxia inducible factor 1alpha; mitogen activated protein kinase; protein p21; protein p53; STAT3 protein; A-375 cell line; advanced cancer; apoptosis; Article; blood oxygen tension; BNIP3 gene; CCNE1 gene; CDC20 gene; CDC6 gene; CDKN1A gene; cell cycle arrest; cell expansion; cell proliferation; cell reprogramming technique; cell survival; cell therapy; CEM-SS cell line; clinical evaluation; clinical pathway; controlled study; cytotoxicity; down regulation; effector cell; GADD45A gene; gene; gene targeting; genetic stability; genetic transcription; glycolysis; human; human cell; in vitro study; in vivo study; K-562 cell line; LDHA gene; MDM2 gene; metabolic activation; natural killer cell; oxidative phosphorylation; PDK1 gene; phenotype; PKM2 gene; ribosomal frameshifting; RNA sequencing; solid malignant neoplasm; upregulation; VEGF gene
제목
Hypoxia-driven hif-1α activation reprograms pre-activated nk cells towards highly potent effector phenotypes via erk/stat3 pathways
저자
Lim, Seon Ah; Moon, Yunwon; Shin, Min Hwa; Kim, Tae-Jin; Chae, Sehyun; Yee, Cassian; Hwang, Daehee; Park, Hyunsung; Lee, Kyung-Mi
DOI
10.3390/cancers13081904
발행일
2021-04
유형
Article
저널명
Cancers
권
13
호
8