NANOG helps cancer cells escape NK cell attack by downregulating ICAM1 during tumorigenesis

Kotaro Saga1, Jinhee Park2, Keisuke Nimura2

  • 1Division of Gene Therapy Science, Osaka University Graduate School of Medicine, 2-2 Yamada-oka, Suita, Osaka, 565-0871, Japan. saga@gts.med.osaka-u.ac.jp.

Abstract

Insights

Newly discovered cancer cells evade immune attack by repressing ICAM1 expression, a process mediated by the NANOG transcription factor. This mechanism is crucial for tumor development and is linked to prostate cancer recurrence.

Area of Science:

  • Immunology
  • Cancer Biology
  • Molecular Mechanisms

Background:

  • Tumorigenesis requires cancer cells to evade immune surveillance, particularly Natural Killer (NK) cell detection.
  • The precise molecular strategies employed by nascent cancer cells to escape NK cell-mediated destruction remain incompletely elucidated.

Purpose of the Study:

  • To investigate the molecular mechanisms underlying NK cell resistance in highly tumorigenic prostate cancer (PCa) cells.
  • To identify key factors and pathways involved in cancer cell evasion of immune attack during tumorigenesis.

Main Methods:

  • Confirmation of NK cell resistance in human PCa xenografts in SCID mice.
  • Investigation of evasion mechanisms using RNAseq, ChIPseq, and genetic manipulation.
  • Analysis of NANOG binding to the ICAM1 promoter region and its effect on p300 binding and ICAM1 expression.

Main Results:

  • NANOG, a pluripotent-related transcription factor, directly represses ICAM1 (Intercellular Adhesion Molecule 1) expression in PCa cells.
  • Increased NANOG binding to the ICAM1 upstream region diminishes p300 binding, leading to decreased ICAM1 expression.
  • High NANOG expression confers resistance to NK cell attack by downregulating ICAM1; low ICAM1 expression correlates with higher PCa recurrence rates.

Conclusions:

  • Repression of ICAM1 by NANOG is a critical mechanism for cancer cells to evade NK cell surveillance during tumorigenesis.
  • NANOG plays a significant role in establishing an immune-evasive gene expression profile in cancer cells.

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