Department of Biochemistry, University of Illinois at Urbana-Champaign, Urbana, IL 61801.
Department of Materials Science and Engineering, University of Illinois at Urbana-Champaign, Urbana, IL 61801.
Proc Natl Acad Sci U S A. 2017 May 16;114(20):E3993-E4001. doi: 10.1073/pnas.1700109114. Epub 2017 May 1.
Bromodomain-containing factor Brd4 has emerged as an important transcriptional regulator of NF-κB-dependent inflammatory gene expression. However, the in vivo physiological function of Brd4 in the inflammatory response remains poorly defined. We now demonstrate that mice deficient for in myeloid-lineage cells are resistant to LPS-induced sepsis but are more susceptible to bacterial infection. Gene-expression microarray analysis of bone marrow-derived macrophages (BMDMs) reveals that deletion of decreases the expression of a significant amount of LPS-induced inflammatory genes while reversing the expression of a small subset of LPS-suppressed genes, including MAP kinase-interacting serine/threonine-protein kinase 2 (). -deficient BMDMs display enhanced Mnk2 expression and the corresponding eukaryotic translation initiation factor 4E (eIF4E) activation after LPS stimulation, leading to an increased translation of IκBα mRNA in polysomes. The enhanced newly synthesized IκBα reduced the binding of NF-κB to the promoters of inflammatory genes, resulting in reduced inflammatory gene expression and cytokine production. By modulating the translation of IκBα via the Mnk2-eIF4E pathway, Brd4 provides an additional layer of control for NF-κB-dependent inflammatory gene expression and inflammatory response.
溴结构域蛋白 4(Bromodomain-containing factor Brd4)已成为 NF-κB 依赖性炎症基因表达的重要转录调节剂。然而,Brd4 在炎症反应中的体内生理功能仍未得到明确界定。我们现在证明,骨髓细胞系中缺失的小鼠对 LPS 诱导的败血症具有抗性,但对细菌感染更为敏感。骨髓来源的巨噬细胞(BMDMs)的基因表达微阵列分析显示,缺失会降低大量 LPS 诱导的炎症基因的表达,同时逆转一小部分 LPS 抑制的基因的表达,包括丝氨酸/苏氨酸蛋白激酶 2(MAP kinase-interacting serine/threonine-protein kinase 2,Mnk2)。LPS 刺激后,-缺陷型 BMDMs 显示出 Mnk2 表达增强和相应的真核翻译起始因子 4E(eukaryotic translation initiation factor 4E,eIF4E)的激活,导致多核糖体中 IκBα mRNA 的翻译增加。新合成的 IκBα 的增加减少了 NF-κB 与炎症基因启动子的结合,从而减少了炎症基因的表达和细胞因子的产生。通过 Mnk2-eIF4E 途径调节 IκBα 的翻译,Brd4 为 NF-κB 依赖性炎症基因表达和炎症反应提供了额外的控制层。