KDELR1 regulates chondrosarcoma drug resistance and malignant behavior through Intergrin-Hippo-YAP1 axis

Author:

Wei Haifeng1,Yin Huabin2,Jiang Dongjie1,Li Yongai2,Chen Wenjun1,Zhang Jie1,Yang Xinghai3,Hu Jinbo1

Affiliation:

1. No.905 Hospital of PLA Navy, Changzheng Hospital, Naval Medical University

2. Shanghai General Hospital, School of Medicine, Shanghai Jiaotong University

3. Changzheng Hospital, Second Military Medical University

Abstract

Abstract

Chondrosarcoma (CS) is the second most common primary bone malignancy, known for its unique transcriptional landscape that renders most CS subtypes resistant to chemotherapy, including neoadjuvant chemotherapy commonly used in osteosarcoma treatment. Understanding the transcriptional landscape of CS and the mechanisms by which key genes contribute to chemotherapy resistance could be a crucial step in overcoming this challenge. To address this, we developed a single-cell transcriptional map of CS, comparing it with osteosarcoma and normal cancellous bone. Our analysis revealed a specific increase in KDEL receptor 1 (KDELR1) expression in CS, which was closely associated with CS prognosis, tumor aggressiveness, and drug resistance. KDELR1 plays a key role in regulating membrane protein processing and secretion, as well as contributing to tumor extracellular matrix (ECM) formation and drug resistance. Further investigation using mass spectrometry proteomics and transcriptomics uncovered KDELR1's involvement in modulating the Hippo-YAP pathway activity in CS cells. The KDELR1-Integrin-PLCγ-YAP1 axis emerges as a critical process mediating drug resistance and malignant behavior in CS, offering novel insights and potential therapeutic targets for CS treatment.

Publisher

Springer Science and Business Media LLC

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