Gene Expression Patterns in Myelodyplasia Underline the Role of Apoptosis and Differentiation in Disease Initiation and Progression

M. Bar, Derek L. Stirewalt, E. Pogosova-Agadjanyan, Vitas E. Wagner, T. Gooley, N. Abbasi, R. Bhatia, H. Deeg, J. Radich
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引用次数: 15

Abstract

The myelodysplastic syndromes (MDS) are clonal stem cell disorders, characterized by ineffective and dysplastic hematopoiesis. The genetic and epigenetic pathways that determine disease stage and progression are largely unknown. In the current study we used gene expression microarray methodology to examine the gene expression differences between normal hematopoietic cells and hematopoietic cells from patients with MDS at different disease stages, using both unselected and CD34+ selected cells. Significant differences between normal and MDS hematopoietic cells were observed for several genes and pathways. Several genes promoting or opposing apoptosis were dysregulated in MDS cases, most notably MCL1 and EPOR. Progression from RA to RAEB(T) was associated with increased expression of several histone genes. In addition, the RAR-RXR pathway, critical for maintaining a balance between self-renewal and differentiation of hematopoietic stem cells, was found to be deregulated in hematopoietic cells from patients with advanced MDS compared to patients with refractory anemia. These findings provide new insights into the understanding of the pathophysiology and progression of MDS, and may guide to new targets for therapy. Taken together with previous published data, the present results also underscore the considerable complexity of the regulation of gene expression in MDS.
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骨髓增生的基因表达模式强调了细胞凋亡和分化在疾病发生和发展中的作用
骨髓增生异常综合征(MDS)是一种克隆性干细胞疾病,以造血功能低下和发育异常为特征。决定疾病分期和进展的遗传和表观遗传途径在很大程度上是未知的。在目前的研究中,我们使用基因表达微阵列方法检测正常造血细胞和不同疾病阶段MDS患者造血细胞之间的基因表达差异,使用未选择和CD34+选择的细胞。正常和MDS造血细胞在一些基因和途径上存在显著差异。几个促进或反对细胞凋亡的基因在MDS病例中失调,最明显的是MCL1和EPOR。从RA到RAEB(T)的进展与几个组蛋白基因的表达增加有关。此外,RAR-RXR通路对维持造血干细胞自我更新和分化之间的平衡至关重要,与难治性贫血患者相比,在晚期MDS患者的造血细胞中,RAR-RXR通路被发现失调。这些发现为理解MDS的病理生理和进展提供了新的见解,并可能指导新的治疗靶点。结合先前发表的数据,目前的结果也强调了MDS中基因表达调控的相当复杂性。
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