Melton David W, Lei XiuFen, Gelfond Jonathan A L, Shireman Paula K
Department of Surgery, University of Texas Health Science Center, San Antonio, Texas; Sam and Ann Barshop Institute for Longevity and Aging Studies, University of Texas Health Science Center, San Antonio, Texas; and South Texas Veterans Health Care System, San Antonio, Texas.
Department of Surgery, University of Texas Health Science Center, San Antonio, Texas; South Texas Veterans Health Care System, San Antonio, Texas.
Physiol Genomics. 2016 May;48(5):345-60. doi: 10.1152/physiolgenomics.00098.2015. Epub 2016 Feb 16.
Dynamic, epigenetic mechanisms can regulate macrophage phenotypes following exposure to different stimulating conditions and environments. However, temporal patterns of microRNAs (miRNAs or miRs) across multiple macrophage polarization phenotypes have not been defined. We determined miRNA expression in bone marrow-derived murine macrophages over multiple time points (0.5, 1, 3, 24 h) following exposure to cytokines and/or LPS. We hypothesized that dynamic changes in miRNAs regulate macrophage phenotypes. Changes in macrophage polarization markers were detected as early as 0.5 and as late as 24 h; however, robust responses for most markers occurred within 3 h. In parallel, many polarization-specific miRNAs were also changed by 3 h and expressed divergent patterns between M1 and M2a conditions, with increased expression in M1 (miR-155, 199a-3p, 214-3p, 455-3p, and 125a) or M2a (miR-511 and 449a). Specifically, miR-125a-5p exhibited divergent patterns: increased at 12-24 h in M1 macrophages and decreasing trend in M2a. VEGF in the culture media of macrophages was dependent upon the polarization state, with greatly diminished VEGF in M2a compared with M1 macrophage culture media despite similar VEGF in cell lysates. Inhibition of miR-125a-5p in media-only controls (MO) and M1 macrophages greatly increased expression and secretion of soluble VEGF receptor-1 (sVEGFR1) leading to diminished VEGF in the culture media, partially converting MO and M1 into an M2a phenotype. Thus, the divergent expression patterns of polarization-specific miRNAs led to the identification and demonstrated the regulation of a specific macrophage polarization phenotype, sVEGFR1 by inhibition of miR-125a-5p.
动态的表观遗传机制可在巨噬细胞暴露于不同刺激条件和环境后调节其表型。然而,多种巨噬细胞极化表型中微小RNA(miRNA或miR)的时间模式尚未明确。我们测定了骨髓来源的小鼠巨噬细胞在暴露于细胞因子和/或脂多糖后的多个时间点(0.5、1、3、24小时)的miRNA表达。我们假设miRNA的动态变化调节巨噬细胞表型。巨噬细胞极化标志物的变化最早在0.5小时检测到,最晚在24小时;然而,大多数标志物的强烈反应在3小时内出现。同时,许多极化特异性miRNA在3小时内也发生了变化,并且在M1和M2a条件下表现出不同的模式,在M1(miR-155、199a-3p、214-3p、45