首页> 外文期刊>Journal of genetics and genomics >Chromosome analysis of esophageal squamous cell carcinoma cell line KYSE 410-4 by repetitive multicolor fluorescence in situ hybridization
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Chromosome analysis of esophageal squamous cell carcinoma cell line KYSE 410-4 by repetitive multicolor fluorescence in situ hybridization

机译:重复多色荧光原位杂交技术分析食管鳞癌KYSE 410-4细胞系的染色体

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摘要

Chromosome aberrations are distinctive features of human malignant tumors. Analysis of chromosomal changes can illuminate the molecular mechanisms underlying the development and progression of cancer. To establish the technique of multicolor fluorescence in situ hybridization (M-FISH) for identifying chromosome aberrations in esophageal carcinoma cell line KYSE 410-4, four pools of 6-color whole-chromosome painting probes have been designed and hybridized on the same metaphase spread by four rounds of repetitive FISH. Repetitive 6-color M-FISH was successfully established and the cytogenetic abnormalities in KYSE 410-4 cells were characterized. Chromosome gains occurred at 2q, 3, 8, 17p, and X. An isochromosome 3q was visualized in the cell line, which might be one intermediate mechanism leading to 3p losses and/or 3q gains. Furthermore, 16 structural arrangements were detected, including four derivative chromosomes. The rearrangement of the centromeric regions accounted for approximately 44% of all rearrangements. The results added a more complete and accurate information of the genetic alterations to the classical cytogenetic description of KYSE 410-4 and provided a detailed cytogenetic background data for appropriate use of the cell line. The established 6-color M-FISH was useful for analyzing chromosomes in the whole genome of human tumors.
机译:染色体畸变是人类恶性肿瘤的显着特征。染色体变化的分析可以阐明癌症发展和进程的分子机制。为了建立多色荧光原位杂交技术(M-FISH)来鉴定食管癌细胞系KYSE 410-4中的染色体畸变,已设计了四个六色全染色体涂漆探针池,并在同一中期扩散杂交。通过四轮重复的FISH。成功建立了重复的六色M-FISH,并鉴定了KYSE 410-4细胞的细胞遗传学异常。染色体增益出现在2q,3、8、17p和X处。在细胞系中观察到了同染色体3q,这可能是导致3p丢失和/或3q增益的一种中间机制。此外,检测到16个结构排列,包括4个衍生染色体。着丝粒区域的重排占所有重排的约44%。结果为KYSE 410-4的经典细胞遗传学描述增加了更完整,准确的遗传学改变信息,并为细胞系的适当使用提供了详细的细胞遗传学背景数据。建立的六色M-FISH可用于分析人类肿瘤整个基因组中的染色体。

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