Nuclear Transport Receptor Importin-β Inhibition Enhances Cell Cycle Arrest Induced by CKS2 Knockdown to Suppress

Shouhua Zhang1, Xiaozhen Meng1,2, Deng Xiang1

  • 1Department of General Surgery, The Affiliated Children's Hospital of Nanchang Medical College, JXHC Key Laboratory of Jiangxi Provincial Children's Hospital, Jiangxi Provincial Children's Hospital, Nanchang, 330006, China.

PubMed

Insights

Cyclin-dependent kinases regulatory subunit 2 (CKS2) drives neuroblastoma growth by promoting cell division. Inhibiting CKS2 or its nuclear import offers a potential new therapy for this aggressive childhood cancer.

Area of Science:

  • Oncology
  • Cell Biology
  • Molecular Biology

Background:

  • Cyclin-dependent kinases regulatory subunit 2 (CKS2) is crucial for cell cycle regulation.
  • The specific role of CKS2 in neuroblastoma, a common pediatric cancer, is not well understood.

Purpose of the Study:

  • To investigate the function and underlying mechanisms of CKS2 in neuroblastoma.
  • To evaluate CKS2 as a potential therapeutic target for neuroblastoma.

Main Methods:

  • Bioinformatic analyses using GEO and TCGA databases.
  • In vitro studies on neuroblastoma cell lines (proliferation, invasion, apoptosis, cell cycle).
  • In vivo xenograft mouse models and importazole treatment.

Main Results:

  • Elevated CKS2 expression correlates with poor prognosis in neuroblastoma.
  • CKS2 is significantly overexpressed in high-risk neuroblastoma tissues and cell lines.
  • CKS2 knockdown inhibits proliferation, invasion, and tumor growth, while inducing apoptosis and cell cycle arrest.
  • CKS2 knockdown impairs CDK1/Cyclin B1 phosphorylation, disrupting cell division signaling.
  • Importazole treatment, an importin-β inhibitor, reduces CKS2 nuclear localization, inhibits proliferation, and increases apoptosis.
  • Combined CKS2 knockdown and importazole treatment show synergistic anti-tumor effects.

Conclusions:

  • CKS2 promotes neuroblastoma progression by regulating the CDK1/Cyclin B1 complex.
  • Targeting CKS2, particularly with nuclear import inhibition, presents a promising therapeutic strategy for neuroblastoma.

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