Wang Xinfeng, Bajpai Akhilesh K, Gu Qingqing, Ashbrook David G, Starlard-Davenport Athena, Lu Lu
Department of Hematology, Affiliated Hospital of Nantong University, Nantong, Jiangsu, China.
Department of Genetics, Genomics, and Informatics, University of Tennessee Health Science Center, Memphis, TN, United States.
Front Genet. 2023 Feb 27;14:1009462. doi: 10.3389/fgene.2023.1009462. eCollection 2023.
Acute myeloid leukemia (AML) is the most common type of leukemia in adults. However, there is a gap in understanding the molecular basis of the disease, partly because key genes associated with AML have not been extensively explored. In the current study, we aimed to identify genes that have strong association with AML based on a cross-species integrative approach. We used Weighted Gene Co-Expression Network Analysis (WGCNA) to identify co-expressed gene modules significantly correlated with human AML, and further selected the genes exhibiting a significant difference in expression between AML and healthy mouse. Protein-protein interactions, transcription factors, gene function, genetic regulation, and coding sequence variants were integrated to identify key hub genes in AML. The cross-species approach identified a total of 412 genes associated with both human and mouse AML. Enrichment analysis confirmed an association of these genes with hematopoietic and immune-related functions, phenotypes, processes, and pathways. Further, the integrated analysis approach identified a set of important module genes including , , , , , , and in AML. Six of these genes (except ) showed significant differential expression between human AML and healthy samples in an independent microarray dataset. All of these genes are known to be involved in immune/hematopoietic functions, and in transcriptional regulation. In addition, , , , and harbor coding sequence variants, whereas and are -regulated, making them attractive candidates for validation. Furthermore, subtype-specific analysis of the hub genes in human AML indicated high expression of across all the subtypes (M0 through M7) and enriched expression of , , , and in M6 and M7 subtypes. A significant correlation between methylation status and expression level was observed for most of these genes in AML patients. Findings from the current study highlight the importance of our cross-species approach in the identification of multiple key candidate genes in AML, which can be further studied to explore their detailed role in leukemia/AML.
急性髓系白血病(AML)是成人中最常见的白血病类型。然而,在理解该疾病的分子基础方面仍存在差距,部分原因是与AML相关的关键基因尚未得到广泛研究。在当前的研究中,我们旨在基于跨物种整合方法鉴定与AML密切相关的基因。我们使用加权基因共表达网络分析(WGCNA)来鉴定与人类AML显著相关的共表达基因模块,并进一步选择在AML和健康小鼠之间表现出显著表达差异的基因。整合蛋白质-蛋白质相互作用、转录因子、基因功能、遗传调控和编码序列变异,以鉴定AML中的关键枢纽基因。跨物种方法共鉴定出412个与人类和小鼠AML均相关的基因。富集分析证实这些基因与造血和免疫相关功能、表型、过程及通路有关。此外,整合分析方法在AML中鉴定出一组重要的模块基因,包括 、 、 、 、 、 和 。在一个独立的微阵列数据集中,这些基因中的6个(除 外)在人类AML和健康样本之间表现出显著的差异表达。所有这些基因均已知参与免疫/造血功能及转录调控。此外, 、 、 和 存在编码序列变异,而 和 受 调控,这使得它们成为有吸引力的验证候选基因。此外,对人类AML中枢纽基因的亚型特异性分析表明, 在所有亚型(M0至M7)中均高表达, 、 、 和 在M6和M7亚型中表达富集。在AML患者中,观察到这些基因中的大多数甲基化状态与表达水平之间存在显著相关性。当前研究的结果突出了我们的跨物种方法在鉴定AML中多个关键候选基因方面的重要性,这些基因可进一步研究以探索它们在白血病/AML中的详细作用。