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Updated: Sep 9, 2025

Establishment of Cancer Stem Cell Cultures from Human Conventional Osteosarcoma
Published on: October 14, 2016
SOCS1 depletion drives osteosarcoma stemness and chemoresistance by suppressing ACTN4 degradation
Jin-Yan Feng1, Xian-Fu Wei1,2, Long Chen1
1National Key Laboratory of Draggability Evaluation and Systematic Translational Medicine, Tianjin's Clinical Research Center for Cancer, Department of Bone and Soft Tissue Tumors, Tianjin Medical University Cancer Institute and Hospital, National Clinical Research Center for Cancer, Tianjin, 300060, China.
Abstract:
Chemoresistance is a major factor contributing to the poor prognosis of osteosarcoma. Increasing evidence underscores the pivotal role of enhanced tumor stemness in driving drug resistance. In this study we investigated the molecular mechanisms underlying the chemoresistance and stemness in osteosarcoma. Two cisplatin-resistant osteosarcoma cell line models (U2OS-DDPr and 143B-DDPr) were established by culturing parental U2OS and 143B cells with escalating cisplatin concentrations (250 ng/mL to 2.5 µg/mL) over a 6-month period. We found that the expression levels of suppressor of cytokine signaling 1 (SOCS1), an E3 ubiquitin ligase, were markedly downregulated in both chemo-resistant osteosarcoma cells and osteosarcoma tumor specimens, and the reduced expression in tumor specimens was correlated to poor prognosis in osteosarcoma patients. Silencing SOCS1 significantly reduced cisplatin sensitivity, enhanced spheroid formation capacity, and upregulated the expression of stem cell markers including SOX2, OCT4, and CD44. Conversely, restoring SOCS1 expression reversed these effects both in vitro and in vivo. Immunoprecipitation-mass spectrometry analysis revealed that SOCS1 bound to ACTN4 and suppressed its protein expression by promoting K63-linked ubiquitination, ultimately leading to proteasomal degradation. Specifically, the SH2 domain of SOCS1 interacted with the N-terminal region of ACTN4, with Lys66 of ACTN4 playing a critical role in facilitating this interaction and subsequent ubiquitination. In addition, the expression of ACTN4 was highly enriched in chemo-resistant tissues, and its overexpression was positively associated with advanced tumor staging. Importantly, ACTN4 functioned as an oncogene to promote cisplatin resistance and stemness in osteosarcoma. Furthermore, we found that wortmannin, an inhibitor of ACTN4, could markedly block the effect of SOCS1 silencing on osteosarcoma aggressiveness. In conclusion, SOCS1 deletion promotes stemness and chemoresistance in osteosarcoma by inhibiting ACTN4 ubiquitination and degradation, which offers promising therapeutic targets for potentiating chemosensitivity in osteosarcoma.
Insights
Suppressor of cytokine signaling 1 (SOCS1) downregulation promotes osteosarcoma stemness and chemoresistance by stabilizing ACTN4. Restoring SOCS1 or inhibiting ACTN4 may improve treatment outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Chemoresistance is a key factor in osteosarcoma prognosis.
- Tumor stemness significantly contributes to drug resistance in osteosarcoma.
Purpose of the Study:
- To investigate the molecular mechanisms linking chemoresistance and stemness in osteosarcoma.
- To identify potential therapeutic targets for enhancing chemosensitivity.
Main Methods:
- Established cisplatin-resistant osteosarcoma cell lines (U2OS-DDPr, 143B-DDPr).
- Analyzed suppressor of cytokine signaling 1 (SOCS1) and ACTN4 expression and function.
- Utilized immunoprecipitation-mass spectrometry and ubiquitination assays.
- Assessed effects of SOCS1 silencing/restoration and ACTN4 inhibition (wortmannin).
Main Results:
- SOCS1 was downregulated in chemo-resistant osteosarcoma cells and tumors, correlating with poor prognosis.
- SOCS1 silencing enhanced stemness (spheroid formation, stem cell markers) and cisplatin resistance.
- SOCS1 targets ACTN4 for degradation via K63-linked ubiquitination.
- ACTN4 overexpression promoted cisplatin resistance and stemness, associated with advanced staging.
Conclusions:
- SOCS1 deletion promotes osteosarcoma stemness and chemoresistance by stabilizing ACTN4.
- Targeting ACTN4 degradation or its oncogenic activity offers a therapeutic strategy for osteosarcoma.
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