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Targeting NAE1-mediated protein hyper-NEDDylation halts cholangiocarcinogenesis and impacts on tumor-stroma crosstalk in experimental models

接合作用 基质 生物 细胞生物学 串扰 神经科学 泛素 免疫学 泛素连接酶 免疫组织化学 遗传学 物理 基因 光学
作者
Paula Olaizola,Pui Yuen Lee,Maite G. Fernández‐Barrena,Laura Álvarez,Massimiliano Cadamuro,Mikel Azkargorta,Colm J. O’Rourke,Francisco J. Caballero‐Camino,Irene Olaizola,Rocı́o I.R. Macı́as,José J.G. Marı́n,Marina Serrano‐Maciá,Maria Luz Martínez‐Chantar,Matías A. Ávila,Patricia Aspichueta,Diego F. Calvisi,Matthias Evert,Luca Fabris,Rui E. Castro,Félix Elortza
出处
期刊:Journal of Hepatology [Elsevier]
卷期号:77 (1): 177-190 被引量:30
标识
DOI:10.1016/j.jhep.2022.02.007
摘要

BACKGROUND AND AIMS: cholangiocarcinoma (CCA) comprises a heterogeneous group of malignant tumors with dismal prognosis. Alterations in post-translational modifications (PTMs), including NEDDylation, result in abnormal protein dynamics, cell disturbances and disease. Here, we investigate the role of NEDDylation in CCA development and progression. METHODS: levels and function of NEDDylation, together with response to pevonedistat (NEDDylation inhibitor) or CRISPR/Cas9 against NAE1 were evaluated in vitro, in vivo and/or in patients with CCA. Development of preneoplastic lesions in Nae1 +/- mice was investigated using an oncogene-driven CCA model. The impact of NEDDylation in CCA cells on tumor-stroma crosstalk was assessed using CCA-derived cancer-associated fibroblasts (CAFs). Proteomic analyses were carried out by mass-spectrometry. RESULTS: NEDDylation machinery was found overexpressed and overactivated in human CCA cells and tumors. Most NEDDylated proteins found upregulated in CCA cells, after NEDD8-immunoprecipitation and further proteomics, participate in cell cycle, proliferation or survival. Genetic (CRISPR/Cas9-NAE1) and pharmacological (pevonedistat) inhibition of NEDDylation reduced CCA cell proliferation and impeded colony formation in vitro. NEDDylation depletion (pevonedistat or Nae1 +/- mice) halted tumorigenesis in subcutaneous, orthotopic, and oncogene-driven models of CCA in vivo. Moreover, pevonedistat potentiated chemotherapy-induced cell death in CCA cells in vitro. Mechanistically, impaired NEDDylation triggered the accumulation of both cullin RING ligase and NEDD8 substrates, inducing DNA damage and cell cycle arrest. Furthermore, NEDDylation impairment in CCA cells reduced the secretion of proteins involved in fibroblast activation, angiogenesis, and oncogenic pathways, ultimately hampering CAF proliferation and migration. CONCLUSION: aberrant protein NEDDylation contributes to cholangiocarcinogenesis by promoting cell survival and proliferation. Moreover, NEDDylation impacts the CCA-stroma crosstalk. Inhibition of NEDDylation with pevonedistat may represent a potential therapeutic strategy for patients with CCA. LAY SUMMARY: Little is known about the role of PTMs in CCA development and progression. Here, we show that protein NEDDylation is upregulated and hyperactivated in CCA, promoting tumor growth. Pharmacological inhibition of NEDDylation halts cholangiocarcinogenesis, emerging as a promising therapeutic strategy to tackle these tumors.
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