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Transcriptional Profiling of Whole Blood Identifies a Unique 5-Gene Signature for Myelofibrosis and Imminent Myelofibrosis Transformation

机译:全血的转录分析确定了骨髓纤维化和即将发生的骨髓纤维化转化的独特的5基因签名。

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摘要

Identifying a distinct gene signature for myelofibrosis may yield novel information of the genes, which are responsible for progression of essential thrombocythemia and polycythemia vera towards myelofibrosis. We aimed at identifying a simple gene signature – composed of a few genes - which were selectively and highly deregulated in myelofibrosis patients. Gene expression microarray studies have been performed on whole blood from 69 patients with myeloproliferative neoplasms. Amongst the top-20 of the most upregulated genes in PMF compared to controls, we identified 5 genes (DEFA4, ELA2, OLFM4, CTSG, and AZU1), which were highly significantly deregulated in PMF only. None of these genes were significantly regulated in ET and PV patients. However, hierarchical cluster analysis showed that these genes were also highly expressed in a subset of patients with ET (n = 1) and PV (n = 4) transforming towards myelofibrosis and/or being featured by an aggressive phenotype. We have identified a simple 5-gene signature, which is uniquely and highly significantly deregulated in patients in transitional stages of ET and PV towards myelofibrosis and in patients with PMF only. Some of these genes are considered to be responsible for the derangement of bone marrow stroma in myelofibrosis. Accordingly, this gene-signature may reflect key processes in the pathogenesis and pathophysiology of myelofibrosis development.
机译:鉴定骨髓纤维化的独特基因特征可能会产生该基因的新信息,这些信息可导致原发性血小板增多症和真性红细胞增多症向骨髓纤维化发展。我们的目标是鉴定一种由几个基因组成的简单基因签名,这些签名在骨髓纤维化患者中被选择性和高度失调。基因表达芯片研究已对69名患有骨髓增生性肿瘤的患者的全血进行了研究。与对照组相比,在PMF中表达最上调的前20个基因中,我们鉴定了5个基因(DEFA4,ELA2,OLFM4,CTSG和AZU1),这些基因仅在PMF中高度失调。这些基因均未在ET和PV患者中得到显着调节。但是,层次聚类分析表明,这些基因在ET(n = 1)和PV(n = 4)转化为骨髓纤维化和/或具有侵袭性表型的患者亚组中也高表达。我们已经确定了一个简单的5基因签名,在ET和PV向骨髓纤维化过渡阶段的患者以及仅PMF的患者中,这种独特且高度显着的失调。这些基因中的一些被认为与骨髓纤维化中骨髓基质的排列紊乱有关。因此,该基因签名可能反映了骨髓纤维化发展的发病机理和病理生理学中的关键过程。

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