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Positional and functional mapping of a neuroblastoma differentiation gene on chromosome 11

机译:神经母细胞瘤分化基因在11号染色体上的位置和功能定位

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Background Loss of chromosome 11q defines a subset of high-stage aggressive neuroblastomas. Deletions are typically large and mapping efforts have thus far not lead to a well defined consensus region, which hampers the identification of positional candidate tumour suppressor genes. In a previous study, functional evidence for a neuroblastoma suppressor gene on chromosome 11 was obtained through microcell mediated chromosome transfer, indicated by differentiation of neuroblastoma cells with loss of distal 11q upon introduction of chromosome 11. Interestingly, some of these microcell hybrid clones were shown to harbour deletions in the transferred chromosome 11. We decided to further exploit this model system as a means to identify candidate tumour suppressor or differentiation genes located on chromosome 11. Results In a first step, we performed high-resolution arrayCGH DNA copy-number analysis in order to evaluate the chromosome 11 status in the hybrids. Several deletions in both parental and transferred chromosomes in the investigated microcell hybrids were observed. Subsequent correlation of these deletion events with the observed morphological changes lead to the delineation of three putative regions on chromosome 11: 11q25, 11p13->11p15.1 and 11p15.3, that may harbour the responsible differentiation gene. Conclusion Using an available model system, we were able to put forward some candidate regions that may be involved in neuroblastoma. Additional studies will be required to clarify the putative role of the genes located in these chromosomal segments in the observed differentiation phenotype specifically or in neuroblastoma pathogenesis in general.
机译:背景染色体11q缺失定义了高级侵袭性神经母细胞瘤的一个子集。缺失通常很大,并且作图工作迄今尚未导致明确定义的共有区,这妨碍了位置候选肿瘤抑制基因的鉴定。在先前的研究中,通过微细胞介导的染色体转移获得了第11号染色体上神经母细胞瘤抑制基因的功能证据,这通过在引入第11号染色体后分化成神经母细胞瘤细胞和远端11q而获得。以保留在转移的11号染色体中的缺失。我们决定进一步利用此模型系统,以鉴定位于11号染色体上的候选肿瘤抑制基因或分化基因。结果在第一步中,我们进行了高分辨率arrayCGH DNA拷贝数分析为了评估杂种中11号染色体的状态。在研究的微细胞杂种中观察到亲本和转移染色体中的几个缺失。这些删除事件与观察到的形态变化的后续相关性导致在11号染色体上确定了三个推定区域:11q25、11p13-> 11p15.1和11p15.3,这可能包含负责任的分化基因。结论使用现有的模型系统,我们能够提出一些可能与神经母细胞瘤有关的候选区域。将需要进一步的研究来阐明位于这些染色体片段中的基因在观察到的分化表型中的特异性作用或在成神经细胞瘤的发病机理中的一般作用。

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