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February 2, 2026Autophagy2 citations

Atg5 /Autophagy inactivation in mouse bone microenvironment promotes tumor development

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MTMarie-Charlotte TrojaniMNMarie NolletOCOlivier Camuzard

Key Points

  • The aim is to investigate the impact of Atg5 inactivation in osteoblasts on tumor development in the bone.
  • Inactivated Atg5 in osteoblasts of mice to observe effects on tumor growth.
  • Analyzed systemic inflammation and bone proteome changes.
  • Assessed metastasis growth in osteosarcoma and breast cancer models.
  • Atg5 inactivation increased osteosarcoma and breast metastasis growth.
  • Systemic inflammation was observed following Atg5 inactivation.
  • Bone proteome changes included translation downregulation and fatty acid beta-oxidation upregulation.

Abstract

Bone is an attractive site for cancer colonization, both for primary tumors such as osteosarcoma and for metastases of various malignancies. Preventing bone metastasis, which is associated with a poor prognosis, is a major challenge and identifying the factors involved in skeletal tumoral development is crucial to improve survival. In the present work, we showed that inactivation of the macroautophagy/autophagy-essential gene Atg5 in osteoblasts, the cells in charge of bone formation, stimulates osteosarcoma and breastbone metastasis growth as well as metastatic dissemination. We determined that Atg5 inactivation leads to systemic inflammation and bone proteome modifications including translation downregulation, stress granule formation, and upregulation of fatty acid beta-oxidation. In addition, Atg5 inactivation triggered lysosomal exocytosis through an autophagy-independent effect. Thus, our findings indicated that autophagy/ATG5 deficiency in the bone microenvironment generates a favorable environment for tumor development through several mechanisms and suggested that a bone-targeted autophagy inducer could be used to delay bone metastasis appearance.

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Cite This Study

Trojani et al. (2026) studied this question.

synapsesocial.com/papers/6980feabc1c9540dea810ef6https://doi.org/10.1080/15548627.2026.2624756
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