Cobos Jiménez Viviana, Willemsen Antonius M, Bradley Edward J, Baas Frank, van Kampen Antoine H C, Kootstra Neeltje A
Department of Experimental Immunology, Sanquin Research, Landsteiner Laboratory, Center for Infectious Diseases and Immunity Amsterdam (CINIMA), Academic Medical Center of the University of Amsterdam, Amsterdam, The Netherlands.
Bioinformatics Laboratory, Department of Clinical Epidemiology, Biostatistics and Bioinformatics, Academic Medical Center of the University of Amsterdam, Amsterdam, The Netherlands.
Genom Data. 2014 Jun 27;2:181-3. doi: 10.1016/j.gdata.2014.06.019. eCollection 2014 Dec.
Macrophages are important for mounting inflammatory responses to tissue damage or infection by invading pathogens, and therefore modulation of their cellular functions is essential for the success of the immune system as well as for maintaining tissue homeostasis. Small non-coding RNAs are important regulatory elements of gene expression and microRNAs are the most widely known to be fundamental for the proper development of cells of the immune system. Macrophages can exhibit different phenotypes, depending on the cytokine environment they encounter in the affected tissues. We have analyzed the microRNA expression profiles during maturation of human primary monocytes into macrophages and polarization by pro- or anti-inflammatory cytokines. Here we describe the analysis of next-generation sequencing data deposited in EMBL-EBI ArrayExpress under accession number E-MTAB-1969 and associated with the study published by Cobos Jiménez and collaborators in Physiological Genomics in 2014 (1). The data presented here contributes to our understanding of microRNA expression profiles in human monocytes and macrophages and will also serve as a resource for novel microRNAs and other small RNA species expressed in these cells.
巨噬细胞对于机体对组织损伤或入侵病原体感染产生炎症反应至关重要,因此调节其细胞功能对于免疫系统的成功运作以及维持组织稳态都必不可少。小非编码RNA是基因表达的重要调控元件,而微小RNA是最为人所知的、对免疫系统细胞的正常发育至关重要的一类。巨噬细胞可呈现不同的表型,这取决于它们在受影响组织中所遇到的细胞因子环境。我们分析了人类原代单核细胞成熟为巨噬细胞过程中以及由促炎或抗炎细胞因子诱导极化过程中的微小RNA表达谱。在此,我们描述了对存于EMBL-EBI ArrayExpress数据库(登录号为E-MTAB-1969)中的下一代测序数据的分析,这些数据与Cobos Jiménez及其合作者于2014年发表在《生理基因组学》上的研究相关(1)。本文所呈现的数据有助于我们了解人类单核细胞和巨噬细胞中的微小RNA表达谱,也将作为这些细胞中表达的新型微小RNA及其他小RNA种类的资源。