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CKS2 Silencing Affects Proliferation and Apoptosis in Multiple Myeloma through the PTEN/ AKT/mTOR Pathway
Jing Zi-Zi1, Yu Wei1, Tang Jia-Lin1
1Department of Hematology, The First Affiliated Hospital of Chongqing Medical University, Chongqing, China.
Abstract:
Multiple myeloma (MM), a prevalent plasma cell malignancy, represents a life-threatening hematological disorder with significant clinical morbidity. Despite its recognized impact on global health burdens, the precise molecular pathogenesis underlying disease progression remains incompletely elucidated. Transcriptomic profiling via RNA sequencing revealed significant upregulation of cyclin-dependent kinase regulatory subunit 2 (CKS2) in multiple myeloma. Clinical validation was performed through quantitative analysis of CKS2 expression in patient-derived specimens. Two established MM cell models (MM.1S and RPMI-8226) were selected for functional characterization. Cellular proliferation dynamics were quantified using CCK-8 metabolic assays and EdU DNA incorporation analysis, with flow cytometric evaluation employed to assess apoptotic indices. A xenograft mouse model was established to investigate CKS2-mediated tumorigenesis in vivo, complemented by western blot analysis of pathway-associated protein expression. Bioinformatic interrogation of the HumanBase database identified putative CKS2 interactomes, subsequently validated through co-immunoprecipitation assays and confocal immunofluorescence microscopy. Structural modeling via AlphaFold2 predicted molecular interaction interfaces, with three-dimensional visualization achieved through PyMOL rendering. In this study, we demonstrated that CKS2 knockdown in MM.1S and RPMI-8226 cell lines significantly inhibited cellular proliferation and induced apoptosis. Conversely, CKS2 overexpression enhanced malignant proliferation while suppressing apoptotic processes, establishing its functional role in myeloma pathogenesis. Mechanistic investigations revealed that CKS2 depletion modulates cell proliferation and apoptosis via PTEN/AKT/mTOR signaling axis. Notably, co-immunoprecipitation assays demonstrated direct protein-protein interaction between CKS2 and thioredoxin (TXN), with subsequent functional validation suggesting TXN appears to function as a key upstream regulatory factor governing CKS2 stability. These findings establish CKS2 as a critical regulator of myeloma cell homeostasis and identify it as a promising therapeutic target warranting further preclinical validation.
Insights
Cyclin-dependent kinase regulatory subunit 2 (CKS2) is upregulated in multiple myeloma and drives cancer progression. Inhibiting CKS2 reduces proliferation and induces apoptosis, identifying it as a potential therapeutic target for this hematological disorder.
Area of Science:
- Hematology
- Molecular Biology
- Oncology
Background:
- Multiple myeloma (MM) is a significant hematological malignancy with incompletely understood molecular drivers.
- Transcriptomic analysis has identified cyclin-dependent kinase regulatory subunit 2 (CKS2) as a potentially crucial factor in MM pathogenesis.
Purpose of the Study:
- To investigate the functional role of CKS2 in multiple myeloma progression.
- To elucidate the molecular mechanisms underlying CKS2's involvement in MM.
- To assess CKS2 as a potential therapeutic target.
Main Methods:
- RNA sequencing and clinical specimen analysis for CKS2 expression.
- In vitro studies using MM cell lines (MM.1S, RPMI-8226) to assess proliferation and apoptosis.
- In vivo xenograft mouse models and western blot analysis.
- Bioinformatic analysis, co-immunoprecipitation, and confocal microscopy to identify and validate CKS2 interactomes.
- Structural modeling using AlphaFold2.
Main Results:
- CKS2 knockdown inhibited MM cell proliferation and induced apoptosis; CKS2 overexpression promoted proliferation and suppressed apoptosis.
- CKS2 modulates proliferation and apoptosis through the PTEN/AKT/mTOR signaling pathway.
- CKS2 directly interacts with thioredoxin (TXN), which regulates CKS2 stability.
Conclusions:
- CKS2 plays a critical role in regulating multiple myeloma cell homeostasis.
- CKS2 is a promising therapeutic target for multiple myeloma, requiring further preclinical investigation.
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