MDA-9/Syntenin in the tumor and microenvironment defines prostate cancer bone metastasis.
Santanu MajiAnjan K PradhanAmit KumarPraveen BhoopathiPadmanabhan MannangattiChunqing GuoJolene J WindleMark A SublerXiang-Yang WangOliver John SemmesJulius O NyalwidheNitai MukhopadhyayAsit Kr PaulBryce HatfieldMichael M LevitEsha MadanDevanand SarkarLuni EmdadDavid J CohenRajan GognaWebster K CaveneeSwadesh K DasPaul B FisherPublished in: Proceedings of the National Academy of Sciences of the United States of America (2023)
Bone metastasis is a frequent and incurable consequence of advanced prostate cancer (PC). An interplay between disseminated tumor cells and heterogeneous bone resident cells in the metastatic niche initiates this process. Melanoma differentiation associated gene-9 ( mda-9/Syntenin/syndecan binding protein ) is a prometastatic gene expressed in multiple organs, including bone marrow-derived mesenchymal stromal cells (BM-MSCs), under both physiological and pathological conditions. We demonstrate that PDGF-AA secreted by tumor cells induces CXCL5 expression in BM-MSCs by suppressing MDA-9-dependent YAP/MST signaling. CXCL5-derived tumor cell proliferation and immune suppression are consequences of the MDA-9/CXCL5 signaling axis, promoting PC disease progression. mda-9 knockout tumor cells express less PDGF-AA and do not develop bone metastases. Our data document a previously undefined role of MDA-9/Syntenin in the tumor and microenvironment in regulating PC bone metastasis. This study provides a framework for translational strategies to ameliorate health complications and morbidity associated with advanced PC.
Keyphrases
- breast cancer cells
- cell cycle arrest
- prostate cancer
- bone mineral density
- binding protein
- cell death
- mesenchymal stem cells
- cell proliferation
- pi k akt
- soft tissue
- bone loss
- radical prostatectomy
- stem cells
- squamous cell carcinoma
- healthcare
- bone regeneration
- small cell lung cancer
- bone marrow
- genome wide
- induced apoptosis
- copy number
- mental health
- smooth muscle
- risk factors
- vascular smooth muscle cells
- patient safety
- signaling pathway
- quality improvement
- deep learning
- big data
- transcription factor
- oxidative stress
- endoplasmic reticulum stress
- genome wide identification