Stabilization of HDAC1 via TCL1-pAKT-CHFR axis is a key element for NANOG-mediated multi-resistance and stem-like phenotype in immune-edited tumor cells

  • Woo, Seon Rang
  • Lee, Hyo-Jung
  • Oh, Se Jin
  • Kim, Suyeon
  • Park, Sang-Hyo
  • ... Kim, Tae Woo
  • 외 2명
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초록

Cancer immunoediting enriches NANOG expression in tumor cells, resulting in multi-drug resistance and stem-like phenotypes. We previously demonstrated that these NANOG-associated phenotypes are promoted through HDAC1 transcriptional upregulation. In this study, we identified that NANOG also contributes to the stabilization of HDAC1 protein through the AKT signaling pathway. NANOG-AKT axis leads to phosphor-dependent inactivation of CHFR, an E3 ligase for HDAC1 protein, and thereby inhibiting the ubiquitin-mediated degradation of HDAC1. Furthermore, AKT inhibition disrupts HDAC1 WT-mediated phenotypes but had no effect on the phenotypes mediated by HDAC1 FM, a mutant that is unable to interact with CHFR. Critically, we applied a catalytic dead mutant, HDAC1-H141A, to uncover that HDAC1 confers immune-resistance, drug-resistance and stem-like phenotype in tumor cells through its catalytic activity. Collectively, our results establish a firm molecular link in immune-edited tumor cells among NANOG, AKT, CHFR, and HDAC1, identifying HDAC1 as a molecular target in controlling NANOGHIGH immune-refractory cancer. (C) 2018 Elsevier Inc. All rights reserved.

키워드

NANOGHDAC1CHFRImmunotherapyChemoresistanceImmuneresistanceCHECKPOINT PROTEIN CHFRCANCER-IMMUNOTHERAPYAKTEVASIONMITOSISENTRY
제목
Stabilization of HDAC1 via TCL1-pAKT-CHFR axis is a key element for NANOG-mediated multi-resistance and stem-like phenotype in immune-edited tumor cells
저자
Woo, Seon RangLee, Hyo-JungOh, Se JinKim, SuyeonPark, Sang-HyoLee, JaeyoonSong, Kwon-HoKim, Tae Woo
DOI
10.1016/j.bbrc.2018.07.118
발행일
2018-09-10
유형
Article
저널명
Biochemical and Biophysical Research Communications
503
3
페이지
1812 ~ 1818