首页> 外文OA文献 >Combined high-resolution array-based comparative genomic hybridization and expression profiling of ETV6/RUNX1-positive acute lymphoblastic leukemias reveal a high incidence of cryptic Xq duplications and identify several putative target genes within the commonly gained region
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Combined high-resolution array-based comparative genomic hybridization and expression profiling of ETV6/RUNX1-positive acute lymphoblastic leukemias reveal a high incidence of cryptic Xq duplications and identify several putative target genes within the commonly gained region

机译:基于高分辨率阵列的比较基因组杂交和ETV6 / RUNX1阳性急性淋巴细胞白血病的表达谱分析揭示了隐性Xq重复的高发生率,并在常见区域内鉴定了几个推定的靶基因

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摘要

Seventeen ETV6/RUNX1-positive pediatric acute lymphoblastic leukemias were investigated by high-resolution array-based comparative genomic hybridization ( array CGH), gene expression profiling and fluorescence in situ hybridization. Comparing the array CGH and gene expression patterns revealed that genomic imbalances conferred a great impact on the expression of genes in the affected regions. The array CGH analyses identified a high frequency of cytogenetically cryptic genetic changes, for example, del(9p) and del(12p). Interestingly, a duplication of Xq material, varying between 30 and 60Mb in size, was found in 6 of 11 males (55%), but not in females. Genes on Xq were found to have a high expression level in cases with dup(Xq); a similar overexpression was confirmed in t(12;21)-positive cases in an external gene expression data set. By studying the expression profile and the proposed function of genes in the minimally gained region, several candidate target genes (SPANXB, HMGB3, FAM50A, HTATSF1 and RAP2C) were identified. Among them, the testis-specific SPANXB gene was the only one showing a high and uniform overexpression, irrespective of gender and presence of Xq duplication, suggesting that this gene plays an important pathogenetic role in t(12;21)-positive leukemia.
机译:通过高分辨率基于阵列的比较基因组杂交(阵列CGH),基因表达谱分析和荧光原位杂交技术研究了17例ETV6 / RUNX1阳性小儿急性淋巴细胞白血病。比较阵列CGH和基因表达模式发现,基因组失衡对受影响区域中基因的表达产生了巨大影响。阵列CGH分析确定了高频率的细胞遗传学隐性遗传变化,例如del(9p)和del(12p)。有趣的是,在11位男性中有6位(55%)发现了Xq材料的重复,大小在30至60Mb之间,而女性没有。发现在dup(Xq)的情况下Xq上的基因具有高表达水平。在外部基因表达数据集中,在t(12; 21)阳性病例中证实了类似的过表达。通过研究在最小增益区中基因的表达谱和拟议功能,鉴定了几种候选靶基因(SPANXB,HMGB3,FAM50A,HTATSF1和RAP2C)。其中,睾丸特异的SPANXB基因是唯一一个显示出高而均匀的过表达的基因,而与性别和Xq复制的存在无关,这表明该基因在t(12; 21)阳性白血病中起重要的致病作用。

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