Non-Immune-Mediated, p27-Associated, Growth Inhibition of Glioblastoma by Class-II-Transactivator (CIITA)

Publication date

2024-11-14

Authors

Tan, A Katherine
Henry, Aurelie
Goffart, Nicolas
Poulet, Christophe
Sluijs, JacquelineISNI 0000000392821721
Hol, EllyORCID 0000-0001-5604-2603
Bours, Vincent
Robe, Pierre AORCID 0000-0001-7845-6196

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Article

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Abstract

BACKGROUND: Previous works have shown that the expression of Class-II-Transactivator (CIITA) in tumor cells reduces the growth of glioblastoma (GB) in animal models, but immune effects cannot solely explain this. Here, we searched for immune-independent effects of CIITA on the proliferation of GB. METHODS: Murine GL261 and human U87, GM2 and GM3 malignant glioma cells were transfected with CIITA. NSG (immunodeficient) and nude (athymic) mice were injected in the striatum with GL261-wildtype (-WT) and -CIITA, and tumor growth was assessed by immunohistology and luminescence reporter genes. Clonogenic, sphere-formation, and 3D Matrigel-based in vitro growth assays were performed to compare the growth of WT versus CIITA-expressing murine and human cells. Bulk RNA sequencing and RT 2 qRT-PCR profiler arrays were performed on these four cell lines to assess RNA expression changes following CIITA transfection. Western blot analysis on several proliferation-associated proteins was performed. RESULTS: The intracerebral growth of murine GL261-CIITA cells was drastically reduced both in immunodeficient and athymic mice. Tumor growth was reduced in vitro in three of the four cell types. RNA sequencing and RT 2 profiler array experiments revealed a modulation of gene expression in the PI3-Akt, MAPK- and cell-cycle regulation pathways following CIITA overexpression. Western blot analysis showed an upregulation of p27 in the growth-inhibited cells following this treatment. PDGFR-beta was downregulated in all cells. We did not find consistent regulation of other proteins involved in GB proliferation. CONCLUSIONS: Proliferation is drastically reduced by CIITA in GB, both in vivo and in vitro, notably in association with p27-mediated inhibition of cell-cycle pathways.

Keywords

Animals, Brain Neoplasms/pathology, Cell Line, Tumor, Cell Proliferation, Cyclin-Dependent Kinase Inhibitor p27/metabolism, Gene Expression Regulation, Neoplastic, Glioblastoma/pathology, Humans, Mice, Mice, Nude, Nuclear Proteins/metabolism, Trans-Activators/metabolism, Journal Article

Citation

Tan, A K, Henry, A, Goffart, N, Poulet, C, Sluijs, J A, Hol, E M, Bours, V & Robe, P A 2024, 'Non-Immune-Mediated, p27-Associated, Growth Inhibition of Glioblastoma by Class-II-Transactivator (CIITA)', Cells, vol. 13, no. 22, 1883. https://doi.org/10.3390/cells13221883