通过基因表达数据的联合聚类对白血病和正常造血进行无监督分析

Liviu Badea
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引用次数: 3

摘要

白血病是一种非常异质性的造血系统癌症。由于其主要原因是造血干细胞或祖细胞的基因组缺陷,并且考虑到造血系统的高度复杂性,研究白血病亚型与造血细胞(干细胞、祖细胞和分化细胞)之间的转录组相似性和差异性似乎是一项重要的任务。在本文中,我们整合了最大的公开可用的白血病和正常造血的基因表达数据集,旨在揭示参与正常造血以及各种白血病亚型的主要基因模块。使用联合共识聚类算法,我们已经能够以无监督的方式将主要白血病类型与其假定的起源细胞联系起来。虽然正常的造血细胞模块在相应细胞类型的白血病中也有活性,但我们的方法已经确定了白血病特异性模块,包括已知参与白血病发生的基因。发现的表达模块涉及异常大量的转录因子。这与仅涉及少数关键tf的非常简单的正常造血和白血病发生模型相反,主张复杂转录因子网络的相互作用,这与FANTOM白血病联盟和Novershtern等人的正常造血研究结果一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Unsupervised analysis of leukemia and normal hematopoiesis by joint clustering of gene expression data
Leukemia is a very heterogeneous cancer of the hematopoietic system. Since its main cause consists of genomic defects in the hematopoietic stem or progenitor cells and given the high complexity of the hematopoietic system, it may seem an important task to investigate the transcriptomic similarities and differences between leukemia subtypes and hematopoietic cells (stem cells, progenitors and differentiated cells). In this paper, we integrate the largest publicly available gene expression datasets of leukemia and normal hematopoiesis with the aim of uncovering the main gene modules involved in normal hematopoiesis as well as in the various leukemia subtypes. Using a joint consensus clustering algorithm, we have been able to relate the major leukemia types to their putative cells of origin in an unsupervised manner. While the normal hematopoietic cell modules are also active in leukemias of the corresponding cell type, our approach has determined leukemia-specific modules comprising genes with a known involvement in leukemogenesis. The expression modules uncovered implicate an unusually large number of transcription factors. This speaks against very simple models of normal hematopoiesis and leukemogenesis that involve just a handful of critical TFs, arguing for the interplay of complex transcription factor networks, in line with the findings of the FANTOM consortium for leukemia and Novershtern et al. for normal hematopoiesis.
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