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CASZ1, a candidate tumor-suppressor gene, suppresses neuroblastoma tumor growth through reprogramming gene expression.

机译:CASZ1是候选的肿瘤抑制基因,它通过重新编程基因表达来抑制神经母细胞瘤肿瘤的生长。

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摘要

Neuroblastoma (NB) is a common childhood malignant tumor of the neural crest-derived sympathetic nervous system. In NB the frequent loss of heterozygosity (LOH) on chromosome 1p raises the possibility that this region contains tumor-suppressor genes whose inactivation contributes to tumorigenesis. The human homolog of the Drosophila neural fate determination gene CASZ1, a zinc-finger transcription factor, maps to chromosome 1p36.22, a region implicated in NB tumorigenesis. Quantitative real-time PCR analysis showed that low-CASZ1 expression is significantly correlated with increased age (>/=18 months), Children's Oncology Group high-risk classification, 1p LOH and MYCN amplification (all P<0.0002) and decreased survival probability (P=0.0009). CASZ1 was more highly expressed in NB with a differentiated histopathology (P<0.0001). Retinoids and epigenetic modification agents associated with regulation of differentiation induced CASZ1 expression. Expression profiling analysis revealed that CASZ1 regulates the expression of genes involved in regulation of cell growth and developmental processes. Specific restoration of CASZ1 in NB cells induced cell differentiation, enhanced cell adhesion, inhibited migration and suppressed tumorigenicity. These data are consistent with CASZ1 being a critical modulator of neural cell development, and that somatically acquired disruption of normal CASZ1 expression contributes to the malignant phenotype of human NB.
机译:神经母细胞瘤(NB)是神经c衍生的交感神经系统常见的儿童期恶性肿瘤。在NB中,染色体1p上杂合性(LOH)的频繁丢失增加了该区域包含抑癌基因的可能性,这些抑癌基因的失活有助于肿瘤发生。果蝇神经命运确定基因CASZ1(锌指转录因子)的人类同源物定位于染色体1p36.22,该区域与NB肿瘤发生有关。实时定量PCR分析显示低CASZ1表达与年龄增加(> / = 18个月),儿童肿瘤学组高风险分类,1p LOH和MYCN扩增(均P <0.0002)和降低的生存概率显着相关( P = 0.0009)。 CASZ1在NB中具有更高的组织病理学表达水平(P <0.0001)。类维生素A和表观遗传修饰剂与分化的调节相关,诱导CASZ1表达。表达谱分析表明,CASZ1调节参与细胞生长和发育过程调控的基因的表达。 NB细胞中CASZ1的特异性恢复可诱导细胞分化,增强细胞粘附性,抑制迁移并抑制致瘤性。这些数据与CASZ1是神经细胞发育的关键调节剂一致,并且体细胞获得的正常CASZ1表达的破坏会导致人NB的恶性表型。

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