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Novel Genes Implicated in Embryonal Alveolar and Pleomorphic Rhabdomyosarcoma: A Cytogenetic and Molecular Analysis of Primary Tumors

机译:涉及胚胎肺泡和多形性横纹肌肉瘤的新基因:原发性肿瘤的细胞遗传学和分子分析。

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摘要

Rhabdomyosarcoma, the most common pediatric soft tissue sarcoma, likely results from deregulation of the skeletal myogenesis program. Although associations between PAX3, PAX7, FOXO1A, and RMS tumorigenesis are well recognized, the entire spectrum of genetic factors underlying RMS development and progression is unclear. Using a combined approach of spectral karyotyping, array-based comparative genomic hybridization (CGH), and expression analysis, we examined 10 primary RMS tumors, including embryonal, alveolar, and the rare adult pleomorphic variant, to explore the involvement of different genes and genetic pathways in RMS tumorigenesis. A complete karyotype established for each tumor revealed a high aneuploidy level, mostly tetraploidy, with double minutes and additional structural aberrations. Quantitative expression analysis detected the overexpression of the AURKA gene in all tumors tested, suggesting a role for this mitotic regulator in the aneuploidy and chromosomal instability observed in RMS. Array-based CGH analysis in primary RMS tumors detected copy number changes of genes involved in multiple genetic pathways, including transcription factors such as MYC-related gene from lung cancer and the cytoskeleton and cell adhesion-encoding genes laminin γ-2 and p21-activated kinase-1. Our data suggest the involvement of genes encoding cell adhesion, cytoskeletal signaling, and transcriptional and cell cycle components in RMS tumorigenesis.
机译:横纹肌肉瘤是最常见的小儿软组织肉瘤,可能是骨骼肌生成程序失调所致。尽管公认PAX3,PAX7,FOXO1A和RMS肿瘤发生之间的关联,但尚不清楚RMS发育和进展的遗传因素的整个范围。使用光谱核型分析,基于阵列的比较基因组杂交(CGH)和表达分析的组合方法,我们检查了10种原发性RMS肿瘤,包括胚胎,肺泡和罕见的成人多态性变体,以探索不同基因和遗传的参与RMS肿瘤发生的途径。为每个肿瘤建立的完整核型显示出较高的非整倍性水平,大部分为四倍体,具有双倍的时间和附加的结构像差。定量表达分析检测到在所有测试的肿瘤中AURKA基因的过度表达,表明该有丝分裂调节剂在RMS中观察到的非整倍性和染色体不稳定性中起作用。基于阵列的CGH分析在原发性RMS肿瘤中检测到多个遗传途径中涉及的基因的拷贝数变化,包括转录因子,例如肺癌的MYC相关基因以及层粘连蛋白γ-2和p21激活的细胞骨架和细胞粘附编码基因激酶1。我们的数据表明,RMS肿瘤发生过程中涉及编码细胞粘附,细胞骨架信号传导以及转录和细胞周期成分的基因。

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