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April 27, 2026Scientific Reports1 citationsOpen Access

β-sitosterol suppresses malignant biological behaviors and glycolysis via modulating YBX1-hnRNP K interaction in non-small cell lung cancer

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GMGuolu MaTCM-Intigrated Cancer Center of Southern Medical UniversityJFJianyu FengFuda Cancer HospitalJZJianying ZengFuda Cancer Hospital

Key Points

  • The study investigates the effects of β-sitosterol on the progression of non-small cell lung cancer (NSCLC).
  • Treatment with varying concentrations of β-sitosterol on NSCLC cells
  • Analyses included cell viability, proliferation, migration, invasion, and apoptosis
  • YBX1-hnRNP K interactions were assessed via co-immunoprecipitation and molecular docking methods.
  • β-sitosterol significantly inhibited malignant behaviors and glycolysis in a dose-dependent manner
  • YBX1-hnRNP K interaction was suppressed without changing their expression levels
  • Overexpression of YBX1 increased malignancy and glycolysis, while hnRNP K silencing reduced these effects.

Abstract

Non-small cell lung cancer (NSCLC) is the most prevalent form of lung malignancy. As a type of phytosterol, β-sitosterol shares structural similarities with cholesterol and has been shown to possess multiple pharmacological properties. This study aimed to investigate how β-sitosterol influences the progression of NSCLC. To assess the impact of β-sitosterol on NSCLC cells, a treatment with a range of concentrations was administered. Subsequent analyses included cell viability (CCK-8 assay), proliferation (EdU incorporation), migration and invasion (Transwell chambers), apoptosis (flow cytometry), and glycolytic metabolism. Interactions between Y-box binding protein 1 (YBX1) and heterogeneous nuclear ribonucleoprotein K (hnRNP K) were predicted using STRING, DMFold, and molecular docking approaches, with subsequent validation by co-immunoprecipitation. To verify their functional roles, genetic modification techniques including overexpression and knockdown were employed. β-sitosterol dose-dependently inhibited malignant biological behaviors and glycolysis while promoting apoptosis. Notably, β-sitosterol suppressed YBX1-hnRNP K binding without altering their expression. Moreover, YBX1 overexpression or YBX1 mutation promoted malignancy and glycolysis, whereas hnRNP K silencing reversed these effects. In this in vitro study, β-sitosterol suppressed malignant biological behaviors and glycolysis. This effect was associated with suppressed YBX1-hnRNP K interaction in NSCLC cells. Although the precise mechanism by which β-sitosterol disrupts this interaction remains to be elucidated, our findings identify the YBX1–hnRNP K complex as a potential mediator of β-sitosterol’s anti-tumor activity in NSCLC.

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Cite This Study

Ma et al. (2026) studied this question.

synapsesocial.com/papers/69eefcf4fede9185760d3b58https://doi.org/10.1038/s41598-026-50434-0
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