慢性淋巴细胞白血病的基因剂量效应

Ludger Sellmann , Rene Scholtysik , Markus Kreuz , Sandra Cyrull , Enrico Tiacci , Jens Stanelle , Alexander Carpinteiro , Holger Nückel , Tanja Boes , Stefan Gesk , Reiner Siebert , Ludger Klein-Hitpass , Ulrich Dührsen , Jan Dürig , Ralf Küppers
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引用次数: 18

摘要

为了从全基因组角度了解染色体改变对基因表达的影响,我们将16例慢性淋巴细胞白血病(CLL)患者的单核苷酸多态性(SNP)芯片检测到的染色体失衡与整体基因表达进行了比较。染色体的增加或减少与受影响区域基因表达的增加或减少之间存在很强的一致性。单亲二体(UPD)的区域是罕见的,通常对基因表达没有一致的影响,但在一个实例中,一个大的UPD与受影响染色体中大多数基因的下调有关。经常被删除的mirna, MIRN15A和MIRN16-1,在单等位基因缺失的情况下没有显示出表达减少。BCL2蛋白被认为被这些mirna下调,不仅在MIRN15A和MIRN16-1双等位基因缺失的CLL中上调,而且在单等位基因缺失的CLL中也上调。这表明CLL细胞中BCL2水平的复杂调控。综上所述,在CLL中,染色体获得和缺失以及某些情况下的upd存在全局基因剂量效应。我们没有证实MIRN15A和MIRN16-1表达水平与BCL2蛋白水平之间存在一致的相关性,这表明BCL2表达存在复杂的调控。
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Gene dosage effects in chronic lymphocytic leukemia

To understand the influence of chromosomal alterations on gene expression in a genome-wide view, chromosomal imbalances detected by single nucleotide polymorphism (SNP) chips were compared with global gene expression in 16 cases of chronic lymphocytic leukemia (CLL). A strong concordance between chromosomal gain or loss and increased or reduced expression of genes in the affected regions was found, respectively. Regions of uniparental disomy (UPD) were rare and had usually no consistent influence on gene expression, but in one instance, a large UPD was associated with a downregulation of most genes in the affected chromosome. The frequently deleted miRNAs, MIRN15A and MIRN16-1, did not show a reduced expression in cases with monoallelic deletions. The BCL2 protein, considered to be downregulated by these miRNAs, was upregulated not only in CLL with biallelic deletion of MIRN15A and MIRN16-1, but also in cases with monoallelic deletion. This suggests a complex regulation of BCL2 levels in CLL cells. Taken together, in CLL, a global gene dosage effect exists for chromosomal gains and deletions and in some instances for UPDs. We did not confirm a consistent correlation between MIRN15A and MIRN16-1 expression levels and BCL2 protein levels, indicating a complex regulation of BCL2 expression.

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