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February 12, 2026Cell Death and Disease2 citationsOpen Access

KIF20A inhibits TRIM21-dependent ubiquitination of DHX9 to boost SOX2 stability, enhancing OSCC stemness and ferroptosis resistance

ZZZiyun ZhangYLYi LiJHJingjiang Hu

Key Points

  • To explore the role of KIF20A in regulating stemness maintenance and ferroptosis resistance in OSCC.
  • Identified KIF20A overexpression in OSCC samples.
  • Used integrative approaches to identify DHX9 as a KIF20A interactor.
  • Investigated KIF20A's effect on DHX9 ubiquitination and stability.
  • Assessed the impact of KIF20A on stem cell phenotypes and ferroptosis.
  • Evaluated ENMD-2076 treatment effects on KIF20A expression and tumor characteristics.
  • KIF20A inhibition reduced DHX9 ubiquitination, increasing its stability.
  • Elevated DHX9 levels correlated with higher SOX2 expression and CSC characteristics.
  • KIF20A promoted ferroptosis resistance in OSCC cells.
  • ENMD-2076 diminished KIF20A levels, improving cisplatin sensitivity and showing antitumor effects.

Abstract

Abstract Oral squamous cell carcinoma (OSCC) is an aggressive malignancy characterized by poor prognosis, largely attributable to cancer stem cell (CSC) persistence and ferroptosis resistance. However, the molecular mechanisms that coordinately regulate stemness maintenance and ferroptosis suppression in OSCC remain insufficiently characterized. In this study, KIF20A was identified as significantly overexpressed in OSCC and strongly correlated with adverse clinical outcomes. An integrative approach identified DHX9 as a candidate interactor of KIF20A. Mechanistic investigations revealed that KIF20A regulates DHX9 nucleocytoplasmic distribution and inhibits TRIM21-mediated K48-linked polyubiquitination at DHX9-K755, thereby preventing its proteasomal degradation and enhancing protein stability. Elevated DHX9 enhanced SOX2 mRNA stability, leading to upregulation of SOX2, a central regulator of both CSC maintenance and ferroptosis resistance. Functionally, KIF20A promoted CSC phenotypes, inhibited ferroptosis in vitro and in vivo, and activated the PI3K/AKT signaling pathway. Notably, treatment with ENMD-2076 (identified through Connectivity Map analysis) significantly reduced KIF20A expression, attenuated CSC characteristics, augmented cisplatin sensitivity, and exerted marked antitumor activity. These findings elucidate a novel KIF20A-DHX9-SOX2 regulatory axis that simultaneously governs CSC maintenance and ferroptosis evasion in OSCC. Targeting KIF20A, either as a monotherapy or in combination with chemotherapy, may offer a promising strategy to improve therapeutic outcomes in OSCC.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/698d6ebb5be6419ac0d5486ahttps://doi.org/10.1038/s41419-026-08467-w
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