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RAB6A functions as a critical modulator of the stem-like subsets in cholangiocarcinoma
Liangfang Yang1, Zhiwen Zhu1, Yang Zheng1
1Department of Hepatobiliary Surgery, The Affiliated Hospital of Guangdong Medical University, Zhanjiang, China.
Abstract:
RAB6A is a member of RAB GTPase family and plays an important role in the targeted transport of neurotrophic receptors and inflammatory cytokines. RAB6A-mediated secretory pathway is involved in many physiological and pathological processes. Defects in RAB6A-mediated secretory pathway may lead to the development of many diseases, including cancer. However, its role in cholangiocarcinoma (CCA) has not yet been revealed. We explored the regulatory role of RAB6A in the stem-like subsets of CCA. We showed that RAB6A knockdown (KD) impedes cancer stem cells (CSCs) properties and epithelial-mesenchymal transition in vitro and that suppression of RAB6A inhibits tumor growth in vivo. We screened target cargos of RAB6A in CCA cells and identified a extracellular matrix component as the target cargo. RAB6A binds directly to OPN, and RAB6A KD suppressed OPN secretion and inhibited the interaction between OPN and αV integrin receptor. Moreover, RAB6A KD inhibited the AKT signaling pathway, which is a downstream effector of the integrin receptor signaling. In addition, shRNA targeting OPN blocked endogenous expression of OPN and consequently weakened CSCs properties in RAB6A-formed spheres. Similarly, inhibitor of AKT signaling, MK2206 also impedes oncogenic function of RAB6A in the stem-like subsets of CCA cells. In conclusion, our findings showed that RAB6A sustains CSCs phenotype maintenance by modulating the secretion of OPN and consequentially activating the downstream AKT signaling pathway. Targeting the RAB6A/OPN axis may be an effective strategy for CCA therapy.
Insights
RAB6A protein regulates cancer stem cell properties in cholangiocarcinoma by controlling osteopontin (OPN) secretion and AKT signaling. Inhibiting this RAB6A/OPN pathway may offer a new therapy for this cancer.
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Biology
Background:
- RAB GTPase family member RAB6A is crucial for cellular transport.
- Dysregulation of RAB6A-mediated pathways is linked to various diseases, including cancer.
- The specific role of RAB6A in cholangiocarcinoma (CCA) remains largely unexplored.
Purpose of the Study:
- To investigate the function of RAB6A in cholangiocarcinoma stem-like cells.
- To elucidate the molecular mechanisms by which RAB6A influences CCA progression.
Main Methods:
- RAB6A knockdown (KD) in CCA cells.
- In vitro assays for cancer stem cell (CSC) properties and epithelial-mesenchymal transition (EMT).
- In vivo tumor growth inhibition studies.
- Identification and validation of RAB6A target cargos, including osteopontin (OPN).
- Analysis of OPN-integrin interactions and downstream AKT signaling pathway modulation.
- Pharmacological inhibition of OPN and AKT signaling.
Main Results:
- RAB6A KD significantly impaired CSC properties and EMT in vitro, and suppressed tumor growth in vivo.
- RAB6A directly binds to and regulates the secretion of osteopontin (OPN).
- RAB6A KD reduced OPN secretion, inhibited OPN-integrin signaling, and suppressed AKT pathway activation.
- Targeting OPN or AKT signaling mimicked the effects of RAB6A suppression on CSC properties.
Conclusions:
- RAB6A promotes cholangiocarcinoma stemness by modulating OPN secretion and activating the AKT signaling pathway.
- The RAB6A/OPN axis represents a potential therapeutic target for cholangiocarcinoma treatment.
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