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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Identification of FOXO3 and PRDM1 as tumor-suppressor gene candidates in NK-cell neoplasms by genomic and functional analyses.
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Identification of FOXO3 and PRDM1 as tumor-suppressor gene candidates in NK-cell neoplasms by genomic and functional analyses.

机译:通过基因组和功能分析鉴定FOXO3和PRDM1作为NK细胞肿瘤中的抑癌基因候选物。

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Oligo-array comparative genomic hybridization (CGH) and gene-expression profiling of natural killer (NK)-cell neoplasms were used in an effort to delineate the molecular pathogenesis involved. Oligo-array CGH identified two 6q21 regions that were most frequently deleted (14 of 39 or 36%). One of these regions included POPDC3, PREP, PRDM1, ATG5, and AIM1, whereas the other included LACE1 and FOXO3. All genes located in these regions, except for POPDC3 and AIM1, were down-regulated in neoplastic samples, as determined by gene-expression analysis, and were therefore considered to be candidate tumor-suppressor genes. A20 and HACE1, the well-known tumor-suppressor genes located on 6q21-23, were included as candidate genes because they also demonstrated frequent genomic deletions and down-regulated expression. The Tet-Off NK cell line NKL was subsequently established for functional analyses. Seven candidate genes were transduced into Tet-Off NKL and forced re-expression was induced. Re-expression of FOXO3 and PRDM1 suppressed NKL proliferation, but this was not the case after re-expression of the other genes. This effect was confirmed using another NK cell line, SNK10. Furthermore, genomic analyses detected nonsense mutations of PRDM1 that led to functional inactivation in one cell line and one clinical sample. PRDM1 and FOXO3 are considered to play an important role in the pathogenesis of NK-cell neoplasms.
机译:寡阵列比较基因组杂交(CGH)和天然杀伤(NK)细胞肿瘤的基因表达谱被用于描述所涉及的分子发病机理。寡阵列CGH鉴定了两个最常缺失的6q21区域(39个中的14个或36%)。这些区域之一包括POPDC3,PREP,PRDM1,ATG5和AIM1,而另一个区域包括LACE1和FOXO3。通过基因表达分析确定,位于这些区域的所有基因(除POPDC3和AIM1外)在肿瘤样品中均下调,因此被认为是候选的肿瘤抑制基因。 A20和HACE1是位于6q21-23上的著名肿瘤抑制基因,因为它们也表现出频繁的基因组缺失和表达下调,因此被列为候选基因。随后建立Tet-Off NK细胞系NKL进行功能分析。将七个候选基因转导到Tet-Off NKL中,并诱导强制重新表达。 FOXO3和PRDM1的重新表达抑制了NKL增殖,但是在其他基因重新表达后情况并非如此。使用另一种NK细胞系SNK10确认了这种效果。此外,基因组分析检测到PRDM1的无意义突变,导致一种细胞系和一种临床样品中的功能失活。 PRDM1和FOXO3被认为在NK细胞肿瘤的发病机理中起着重要作用。

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