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1.
Oncogene ; 36(35): 5075-5082, 2017 08 31.
Article in English | MEDLINE | ID: mdl-28459463

ABSTRACT

Neuroblastoma (NBL) is an embryonal cancer of the sympathetic nervous system (SNS), which causes 15% of pediatric cancer deaths. High-risk NBL is characterized by N-Myc amplification and segmental chromosomal gains and losses. Owing to limited disease models, the etiology of NBL is largely unknown, including both the cell of origin and the majority of oncogenic drivers. We have established a novel system for studying NBL based on the transformation of neural crest cells (NCCs), the progenitor cells of the SNS, isolated from mouse embryonic day 9.5 trunk neural tube explants. Based on pathology and gene expression analysis, we report the first successful transformation of wild-type NCCs into NBL by enforced expression of N-Myc, to generate phenotypically and molecularly accurate tumors that closely model human MYCN-amplified NBL. Using comparative genomic hybridization, we found that NCC-derived NBL tumors acquired copy number gains and losses that are syntenic to those observed in human MYCN-amplified NBL including 17q gain, 2p gain and loss of 1p36. When p53-compromised NCCs were transformed with N-Myc, we generated primitive neuroectodermal tumors with divergent differentiation including osteosarcoma. These subcutaneous tumors were metastatic to regional lymph nodes, liver and lung. Our novel experimental approach accurately models human NBL and establishes a new system with potential to study early stages of NBL oncogenesis, to functionally assess NBL oncogenic drivers and to characterize NBL metastasis.


Subject(s)
Cell Transformation, Neoplastic/genetics , N-Myc Proto-Oncogene Protein/genetics , Neural Crest/pathology , Neuroblastoma/genetics , Animals , Cell Line, Tumor , Cell Proliferation/physiology , Cell Transformation, Neoplastic/metabolism , Cell Transformation, Neoplastic/pathology , Disease Models, Animal , Female , Heterografts , Male , Mice , Mice, Inbred C57BL , Mice, Nude , N-Myc Proto-Oncogene Protein/metabolism , Neural Crest/metabolism , Neuroblastoma/metabolism , Neuroblastoma/pathology , Tumor Suppressor Protein p53/genetics , Tumor Suppressor Protein p53/metabolism
2.
Oncogene ; 30(43): 4386-98, 2011 Oct 27.
Article in English | MEDLINE | ID: mdl-21552288

ABSTRACT

Cancer cell resistance to paclitaxel continues to be a major clinical problem. In this study, we utilized microRNA (miRNA) arrays to screen for differentially expressed miRNAs in paclitaxel-resistant cell lines established in vitro. We observed concordant upregulation of miR-135a in paclitaxel-resistant cell lines representing three human malignancies. Subsequently, the role of miRNA-135a was evaluated in an in vivo model of paclitaxel resistance. In this model, mice were inoculated subcutaneously with a non-small cell lung carcinoma cell line and treated with paclitaxel for a prolonged period. In paclitaxel-resistant cell lines, established either in vitro or in vivo, blockage of miR-135a sensitized resistant cell lines to paclitaxel-induced cell death. We further demonstrated a correlation between paclitaxel response and miR-135a expression in paclitaxel-resistant subclones that were established in vivo. The paclitaxel-resistant phenotype of these subclones was maintained upon retransplantation in new mice, as shown by decreased tumor response upon paclitaxel treatment compared with controls. Upregulation of miR-135a was associated with reduced expression of the adenomatous polyposis coli gene (APC). APC knockdown increased paclitaxel resistance in parental cell lines. Our results indicate that paclitaxel resistance is associated with upregulation of miR-135a, both in vitro and in vivo, and is in part determined by miR-135a-mediated downregulation of APC.


Subject(s)
Drug Resistance, Neoplasm/genetics , Gene Expression Regulation, Neoplastic , Genes, APC , MicroRNAs/physiology , Paclitaxel/pharmacology , Animals , Carcinoma, Non-Small-Cell Lung/genetics , Cell Line, Tumor , Humans , Lung Neoplasms/genetics , Mice , Mice, Nude , Neoplasm Transplantation , Up-Regulation
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