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elevation of the tp53 isoform δ133p53β in glioblastomas: an alternative to mutant p53 in promoting tumor development
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نویسنده
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kazantseva m. ,eiholzer r.a. ,mehta s. ,taha a. ,bowie s. ,roth i. ,zhou j. ,joruiz s.m. ,royds j.a. ,hung n.a. ,slatter t.l. ,braithwaite a.w.
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منبع
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journal of pathology - 2018 - دوره : 246 - شماره : 1 - صفحه:77 -88
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چکیده
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As tumor protein 53 (p53) isoforms have tumor-promoting, migration, and inflammatory properties, this study investigated whether p53 isoforms contributed to glioblastoma progression. the expression levels of full-length tp53α (tap53α) and six tp53 isoforms were quantitated by rt-qpcr in 89 glioblastomas and correlated with tp53 mutation status, tumor-associated macrophage content, and various immune cell markers. elevated levels of δ133p53β mrna characterised glioblastomas with increased cd163-positive macrophages and wild-type tp53. in situ-based analyses found δ133p53β expression localised to malignant cells in areas with increased hypoxia, and in cells with the monocyte chemoattractant protein c-c motif chemokine ligand 2 (ccl2) expressed. tumors with increased δ133p53β had increased numbers of cells positive for macrophage colony-stimulating factor 1 receptor (csf1r) and programmed death ligand 1 (pdl1). in addition, cells expressing a murine ‘mimic’ of δ133p53 (δ122p53) were resistant to temozolomide treatment and oxidative stress. our findings suggest that elevated δ133p53β is an alternative pathway to tp53 mutation in glioblastoma that aids tumor progression by promoting an immunosuppressive and chemoresistant environment. adding δ133p53β to a tp53 signature along with tp53 mutation status will better predict treatment resistance in glioblastoma. © 2018 the authors. the journal of pathology published by john wiley & sons ltd on behalf of pathological society of great britain and ireland.
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کلیدواژه
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csf1r ,glioblastoma ,mutant tp53 ,pdl1 ,tp53 isoform ,tumor-associated macrophages ,δ133p53β
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آدرس
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university of otago, dunedin school of medicine, department of pathology, new zealand. maurice wilkins centre for molecular biodiscovery, new zealand, university of otago, dunedin school of medicine, department of pathology, new zealand, university of otago, dunedin school of medicine, department of pathology, new zealand. maurice wilkins centre for molecular biodiscovery, maurice wilkins centre for molecular biodiscovery, department of neurosurgery, new zealand, university of otago, dunedin school of medicine, department of pathology, new zealand, university of otago, dunedin school of medicine, department of pathology, new zealand, university of otago, dunedin school of medicine, department of radiology, new zealand. southern district health board, department of radiology, new zealand, university of dundee, jacqui wood cancer centre, division of cancer research, united kingdom, university of otago, dunedin school of medicine, department of pathology, new zealand, university of otago, dunedin school of medicine, department of pathology, new zealand, university of otago, dunedin school of medicine, department of pathology, new zealand, university of otago, dunedin school of medicine, department of pathology, new zealand. maurice wilkins centre for molecular biodiscovery, new zealand
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Authors
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