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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.
Abstract:
Cyclin-dependent kinases regulatory subunit 2 (CKS2) is a key regulator of the cell cycle, but its role in neuroblastoma remains poorly understood. This study investigates the function and mechanisms of CKS2 in neuroblastoma through bioinformatics analyses, as well as in vitro and in vivo experiments. Data from the GEO and TCGA databases indicate that elevated CKS2 expression is associated with poor prognosis in neuroblastoma. Analysis of clinical tumor samples and cell lines further confirmed that CKS2 was significantly overexpressed, particularly in high-risk neuroblastoma patient-derived tissues. Functional studies revealed that CKS2 knockdown reduced cell proliferation and invasion, induced apoptosis, and caused cell cycle arrest in neuroblastoma cells. In vivo, tumors formed from CKS2-silenced cells showed markedly reduced growth. Mechanistically, CKS2 knockdown decreased the phosphorylation of CDK1 (Thr161) and Cyclin B1 (Ser126), suggesting impaired cell division signaling. Treatment with importazole, an importin-β inhibitor, caused CKS2 to accumulate in the cytoplasm rather than in the nucleus, inhibiting proliferation and increasing apoptosis of neuroblastoma cells. Notably, the combination of CKS2 knockdown and importazole treatment produced a stronger anti-tumor effect than either intervention alone. These findings demonstrate that CKS2 promotes neuroblastoma progression by facilitating cell division via the CDK1/Cyclin B1 complex. Targeting CKS2, especially in combination with nuclear import inhibition, offers a promising therapeutic strategy for neuroblastoma.
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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