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Dual roles for MEF2A and MEF2D during human macrophage terminal differentiation and c-Jun expression

机译:MEF2A和MEF2D在人类巨噬细胞终末分化和c-Jun表达过程中的双重作用

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pRecent reports have evidenced a role for MEF2C (myocyte enhancer factor 2C) in myelopoiesis, although the precise functions of this transcription factor are still unclear. We show in the present study that MEF2A and MEF2D, two other MEF2 family members, are expressed in human primary monocytes and in higher amounts in monocyte-derived macrophages. High levels of MEF2A–MEF2D heterodimers are found in macrophage-differentiated HL60 cells. Chromatin immunoprecipitations demonstrate that MEF2A is present on the ic-Jun/i promoter, both in undifferentiated and in macrophage-differentiated cells. Moreover, c-Jun expression is derepressed in undifferentiated cells in the presence of HDAC (histone deacetylase) inhibitor, indicating the importance of chromatin acetylation in this process. We show that MEF2A/D dimers strongly interact with HDAC1, and to a lesser extent with HDAC7 in macrophages, whereas low levels of MEF2A/D–HDAC1 complexes are found in undifferentiated cells or in monocytes. Since trichostatin A does not disrupt MEF2A/D–HDAC1 complexes, we analysed the potential interaction of MEF2A with p300 histone acetyltransferase, whose expression is up-regulated in macrophages. Interestingly, endogenous p300 only associates with MEF2A in differentiated macrophages, indicating that MEF2A/D could activate c-Jun expression in macrophages through a MEF2A/D–p300 activator complex. The targets of MEF2A/D–HDAC1–HDAC7 multimers remain to be identified. Nevertheless, these data highlight for the first time the possible dual roles of MEF2A and MEF2D in human macrophages, as activators or as repressors of gene transcription./p
机译:>最近的报道表明MEF2C(肌细胞增强因子2C)在骨髓生成中起作用,尽管该转录因子的确切功能尚不清楚。我们在本研究中显示,MEF2A和MEF2D,另外两个MEF2家族成员,在人原代单核细胞中表达,并在单核细胞衍生的巨噬细胞中表达更高。在巨噬细胞分化的HL60细胞中发现高水平的MEF2A–MEF2D异二聚体。染色质免疫沉淀表明,MEF2A存在于 c-Jun 启动子上,既存在于未分化的细胞中,也存在于巨噬细胞分化的细胞中。此外,在存在HDAC(组蛋白脱乙酰基酶)抑制剂的情况下,未分化细胞中的c-Jun表达被抑制,表明染色质乙酰化在此过程中的重要性。我们显示,MEF2A / D二聚体与HDAC1强烈相互作用,在巨噬细胞中与HDAC7相互作用较小,而在未分化细胞或单核细胞中发现低水平的MEF2A / D-HDAC1复合物。由于曲古抑菌素A不会破坏MEF2A / D-HDAC1复合物,我们分析了MEF2A与p300组蛋白乙酰基转移酶的潜在相互作用,后者在巨噬细胞中的表达上调。有趣的是,内源性p300仅与分化的巨噬细胞中的MEF2A缔合,表明MEF2A / D可以通过MEF2A / D–p300激活物复合物激活巨噬细胞中的c-Jun表达。 MEF2A / D–HDAC1–HDAC7多聚体的目标仍有待确定。尽管如此,这些数据还是首次突显了MEF2A和MEF2D在人类巨噬细胞中可能作为基因转录的激活剂或阻遏剂的双重作用。

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