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Gene expression profiling and gene copy-number changes in malignant mesothelioma cell lines.

机译:恶性间皮瘤细胞系中的基因表达谱和基因拷贝数变化。

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Malignant mesothelioma (MM) is an asbestos-induced tumor that acquires aneuploid DNA content during the tumorigenic process. We used instable MM cell lines as an in vitro model to study the impact of DNA copy-number changes on gene expression profiling, in the course of their chromosomal redistribution process. Two MM cell lines, PMR-MM2 (early passages of in vitro culture) and PMR-MM7 (both early and late passages of in vitro culture), were cytogenetically characterized. Genomic gains and losses were precisely defined using microarray-based comparative genomic hybridization (array-CGH), and minimal overlapping analysis led to the identification of the common unbalanced genomic regions. Using the U133Plus 2.0 Affymetrix gene chip array, we analyzed PMR-MM7 early and late passages for genome-wide gene expression, and correlated the differentially expressed genes with copy-number changes. The presence of a high number of genetic imbalances occurring from early to late culture steps reflected the tendencyof MM cells toward genomic instability. The selection of specific chromosomal abnormalities observed during subsequent cultures demonstrated the spontaneous evolution of the cancer cells in an in vitro environment. MM cell lines were characterized by copy-number changes associated with the TP53 apoptotic pathway already present at the first steps of in vitro culture. Prolonged culture led to acquisition of additional chromosomal copy-number changes associated with dysregulation of genes involved in cell adhesion, regulation of mitotic cell cycle, signal transduction, carbohydrate metabolism, motor activity, glycosaminoglycan biosynthesis, protein binding activity, lipid transport, ATP synthesis, and methyltransferase activity.
机译:恶性间皮瘤(MM)是石棉诱导的肿瘤,在致瘤过程中获得非整倍体DNA含量。我们使用不稳定的MM细胞系作为体外模型,研究在染色体重新分布过程中DNA拷贝数变化对基因表达谱的影响。在细胞遗传学上鉴定了两种MM细胞系PMR-MM2(体外培养的早期传代)和PMR-MM7(体外培养的早期和晚期传代)。使用基于微阵列的比较基因组杂交(array-CGH)精确定义了基因组的得失,并且最小限度的重叠分析导致了对常见不平衡基因组区域的鉴定。使用U133Plus 2.0 Affymetrix基因芯片阵列,我们分析了PMR-MM7早期和晚期传代的全基因组基因表达,并将差异表达的基因与拷贝数变化相关联。从早期培养阶段到晚期培养阶段出现的大量遗传失衡现象反映了MM细胞趋向基因组不稳定的趋势。在随后的培养过程中观察到的特定染色体异常的选择证明了癌细胞在体外环境中的自发进化。 MM细胞系的特征是与体外培养的第一步已经存在的TP53细胞凋亡途径相关的拷贝数变化。长时间的培养导致获得额外的染色体拷贝数变化,这些变化与细胞粘附,调控有丝分裂细胞周期,信号转导,碳水化合物代谢,运动活性,糖胺聚糖生物合成,蛋白结合活性,脂质转运,ATP合成,和甲基转移酶活性。

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