
Abstract Background Prostate cancer develops through malignant transformation of the prostate epithelium in a stepwise, mutation-driven process. Although activator protein-1 transcription factors such as JUN have been implicated as potential oncogenic drivers, the molecular programs contributing to prostate cancer progression are not fully understood. Methods We analyzed JUN expression in clinical prostate cancer samples across different stages and investigated its functional role in a Pten-deficient mouse model. We performed histopathological examinations, transcriptomic analyses and explored the senescence-associated secretory phenotype in the tumor microenvironment. Results Elevated JUN levels characterized early-stage prostate cancer and predicted improved survival in human and murine samples. Immune-phenotyping of Pten-deficient prostates revealed high accumulation of tumor-infiltrating leukocytes, particularly innate immune cells, neutrophils and macrophages as well as high levels of STAT3 activation and IL-1β production. Jun depletion in a Pten-deficient background prevented immune cell attraction which was accompanied by significant reduction of active STAT3 and IL-1β and accelerated prostate tumor growth. Comparative transcriptome profiling of prostate epithelial cells revealed a senescence-associated gene signature, upregulation of pro-inflammatory processes involved in immune cell attraction and of chemokines such as IL-1β, TNF-α, CCL3 and CCL8 in Pten-deficient prostates. Strikingly, JUN depletion reversed both the senescence-associated secretory phenotype and senescence-associated immune cell infiltration but had no impact on cell cycle arrest. As a result, JUN depletion in Pten-deficient prostates interfered with the senescence-associated immune clearance and accelerated tumor growth. Conclusions Our results suggest that JUN acts as tumor-suppressor and decelerates the progression of prostate cancer by transcriptional regulation of senescence- and inflammation-associated genes. This study opens avenues for novel treatment strategies that could impede disease progression and improve patient outcomes. Graphical Abstract
Male, Cancer Research, Male; Prostatic Neoplasmspathologygeneticsmetabolism; Animals; Mice; Humans; PTEN Phosphohydrolasegeneticsmetabolism; Disease Progression; Tumor Microenvironmentimmunology; Senescence-Associated Secretory Phenotype; Proto-Oncogene Proteins c-junmetabolism; Gene Expression Regulation, Neoplastic; Cell Line, Tumor; Gene Expression Profiling; Cellular Senescencegenetics; Disease Models, Animal, Proto-Oncogene Proteins c-jun, 610, AP-1 transcription factors, Senescence, SASP, Gene Expression Regulation, Neoplastic [MeSH] ; Senescence ; Cell Line, Tumor [MeSH] ; Disease Progression [MeSH] ; Immune infiltration ; Prostatic Neoplasms/metabolism [MeSH] ; AP-1 transcription factors ; Prostatic Neoplasms/pathology [MeSH] ; Tumor Microenvironment/immunology [MeSH] ; SASP ; Male [MeSH] ; Cellular Senescence/genetics [MeSH] ; Disease Models, Animal [MeSH] ; Prostate cancer ; Humans [MeSH] ; PTEN Phosphohydrolase/genetics [MeSH] ; Animals [MeSH] ; Prostatic Neoplasms/genetics [MeSH] ; PTEN Phosphohydrolase/metabolism [MeSH] ; Proto-Oncogene Proteins c-jun/metabolism [MeSH] ; Mice [MeSH] ; Research ; JUN ; Gene Expression Profiling [MeSH] ; Senescence-Associated Secretory Phenotype [MeSH], Mice, 106023 Molekularbiologie, SDG 3 - Good Health and Well-being, Cell Line, Tumor, Tumor Microenvironment, Animals, Humans, 302055 Oncology, JUN, RC254-282, Cellular Senescence, Cancer och onkologi, Prostate cancer, 302055 Onkologie, Research, Gene Expression Profiling, PTEN Phosphohydrolase, Neoplasms. Tumors. Oncology. Including cancer and carcinogens, Prostatic Neoplasms, 600, 106023 Molecular biology, Prostate cancer; AP-1 transcription factors; JUN; Senescence; SASP; Immune infiltration, Immune infiltration, Gene Expression Regulation, Neoplastic, Disease Models, Animal, Cancer and Oncology, SDG 3 – Gesundheit und Wohlergehen, Disease Progression, Integrative Biomedicine [Topic 3], Senescence-Associated Secretory Phenotype
Male, Cancer Research, Male; Prostatic Neoplasmspathologygeneticsmetabolism; Animals; Mice; Humans; PTEN Phosphohydrolasegeneticsmetabolism; Disease Progression; Tumor Microenvironmentimmunology; Senescence-Associated Secretory Phenotype; Proto-Oncogene Proteins c-junmetabolism; Gene Expression Regulation, Neoplastic; Cell Line, Tumor; Gene Expression Profiling; Cellular Senescencegenetics; Disease Models, Animal, Proto-Oncogene Proteins c-jun, 610, AP-1 transcription factors, Senescence, SASP, Gene Expression Regulation, Neoplastic [MeSH] ; Senescence ; Cell Line, Tumor [MeSH] ; Disease Progression [MeSH] ; Immune infiltration ; Prostatic Neoplasms/metabolism [MeSH] ; AP-1 transcription factors ; Prostatic Neoplasms/pathology [MeSH] ; Tumor Microenvironment/immunology [MeSH] ; SASP ; Male [MeSH] ; Cellular Senescence/genetics [MeSH] ; Disease Models, Animal [MeSH] ; Prostate cancer ; Humans [MeSH] ; PTEN Phosphohydrolase/genetics [MeSH] ; Animals [MeSH] ; Prostatic Neoplasms/genetics [MeSH] ; PTEN Phosphohydrolase/metabolism [MeSH] ; Proto-Oncogene Proteins c-jun/metabolism [MeSH] ; Mice [MeSH] ; Research ; JUN ; Gene Expression Profiling [MeSH] ; Senescence-Associated Secretory Phenotype [MeSH], Mice, 106023 Molekularbiologie, SDG 3 - Good Health and Well-being, Cell Line, Tumor, Tumor Microenvironment, Animals, Humans, 302055 Oncology, JUN, RC254-282, Cellular Senescence, Cancer och onkologi, Prostate cancer, 302055 Onkologie, Research, Gene Expression Profiling, PTEN Phosphohydrolase, Neoplasms. Tumors. Oncology. Including cancer and carcinogens, Prostatic Neoplasms, 600, 106023 Molecular biology, Prostate cancer; AP-1 transcription factors; JUN; Senescence; SASP; Immune infiltration, Immune infiltration, Gene Expression Regulation, Neoplastic, Disease Models, Animal, Cancer and Oncology, SDG 3 – Gesundheit und Wohlergehen, Disease Progression, Integrative Biomedicine [Topic 3], Senescence-Associated Secretory Phenotype
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