Cooperative and distinct functions of MK2 and MK3 in the regulation of the macrophage transcriptional response to lipopolysaccharide

被引:0
|
作者
Christian Ehlting
Julia Rex
Ute Albrecht
René Deenen
Christopher Tiedje
Karl Köhrer
Oliver Sawodny
Matthias Gaestel
Dieter Häussinger
Johannes Georg Bode
机构
[1] University Hospital,Clinic for Gastroenterology, Hepatology and Infectiology
[2] Medical Faculty,Institute for System Dynamics
[3] Heinrich Heine University of Düsseldorf,Biological and Medical Research Center (BMFZ), Genomics & Transcriptomics Laboratory
[4] University of Stuttgart,Institute of Cell Biochemistry
[5] Heinrich Heine University of Düsseldorf,Department of Cellular and Molecular Medicine
[6] Hannover Medical School,undefined
[7] University of Copenhagen,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
The p38MAPK downstream targets MAPKAP kinases (MK) 2 and 3 are critical for the regulation of the macrophage response to LPS. The extents to which these two kinases act cooperatively and distinctly in regulating LPS-induced inflammatory cytokine expression are still unclear. To address this uncertainty, whole transcriptome analyses were performed using bone marrow-derived macrophages (BMDM) generated from MK2−/− or MK2/3−/− animals and their wild-type littermates. The results suggest that in BMDM, MK2 and MK3 not only cooperatively regulate the transcript expression of signaling intermediates, including IL-10, IL-19, CXCL2 and the IL-4 receptor (IL-4R)α subunit, they also exert distinct regulatory effects on the expression of specific transcripts. Based on the differential regulation of gene expression by MK2 and MK3, at least six regulatory patterns were identified. Importantly, we confirmed our previous finding, which showed that in the absence of MK2, MK3 negatively regulates IFN-β. Moreover, this genome-wide analysis identified the regulation of Cr1A, NOD1 and Serpina3f as similar to that of IFN-β. In the absence of MK2, MK3 also delayed the nuclear translocation of NFκB by delaying the ubiquitination and subsequent degradation of IκBβ, reflecting the substantial plasticity of the response of BMDM to LPS.
引用
收藏
相关论文
共 50 条
  • [41] The size multipartite Ramsey numbers mj(C3, C3, nK2, mK2)
    Rowshan, Yaser
    Gholami, Mostafa
    DISCRETE MATHEMATICS ALGORITHMS AND APPLICATIONS, 2023, 15 (03)
  • [42] MK2 Phosphorylates Capase 3 and Regulates Nuclear Translocation of Cleaved Caspase 3 during LPS mediated Apoptosis
    Damarla, Mahnendra
    Johnston, Iaura
    Kim, Bo
    Kolb, Todd
    Damico, Rachel
    Merchant, Michael
    Rane, Madhavi
    Machamer, Carolyn
    Hassoun, Paul
    FASEB JOURNAL, 2015, 29
  • [43] The MAP kinase-activated protein kinase 2 (MK2) contributes to the Shiga toxin-induced inflammatory response
    Saenz, Jose B.
    Li, Jinmei
    Haslam, David B.
    CELLULAR MICROBIOLOGY, 2010, 12 (04) : 516 - 529
  • [44] Discovery of selective and orally available spiro-3-piperidyl ATP-competitive MK2 inhibitors
    Kaptein, Allard
    Oubrie, Arthur
    de Zwart, Edwin
    Hoogenboom, Niels
    de Wit, Joeri
    van de Kar, Bas
    van Hoek, Maaike
    Vogel, Gerard
    de Kimpe, Vera
    Schultz-Fademrecht, Carsten
    Borsboom, Judith
    van Zeeland, Mario
    Versteegh, Judith
    Kazemier, Bert
    de Roos, Jeroen
    Wijnands, Frank
    Dulos, John
    Jaeger, Martin
    Leandro-Garcia, Paula
    Barf, Tjeerd
    BIOORGANIC & MEDICINAL CHEMISTRY LETTERS, 2011, 21 (12) : 3823 - 3827
  • [45] p38 MAP Kinase and MAPKAP Kinases MK2/3 Cooperatively Phosphorylate Epithelial Keratins
    Menon, Manoj B.
    Schwermann, Jessica
    Singh, Anurag Kumar
    Franz-Wachtel, Mirita
    Pabst, Oliver
    Seidler, Ursula
    Omary, M. Bishr
    Kotlyarov, Alexey
    Gaestel, Matthias
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2010, 285 (43) : 33242 - 33251
  • [46] Loss of MKK3 and MK2 Copy Numbers in Non-Small Cell Lung Cancer
    Erdem, Johanna Samulin
    Skaug, Vidar
    Haugen, Aage
    Zienolddiny, Shanbeh
    JOURNAL OF CANCER, 2016, 7 (05): : 512 - 515
  • [47] MiR-137 inhibited inflammatory response and apoptosis after spinal cord injury via targeting of MK2
    Gao, Lin
    Dai, Chenfei
    Feng, Zhiping
    Zhang, Lixin
    Zhang, Zhiqiang
    JOURNAL OF CELLULAR BIOCHEMISTRY, 2018, 119 (04) : 3280 - 3292
  • [48] Functional domains of the mK3 protein of HV68 critical for peptide-loading complex association and class I down regulation
    Wang, XL
    Harris, MR
    Connors, RE
    Lybarger, L
    Hansen, TH
    FASEB JOURNAL, 2003, 17 (07): : C303 - C303
  • [49] MicroRNA-24-3p Inhibits Microglia Inflammation by Regulating MK2 Following Spinal Cord Injury
    Lin Zhao
    Juan Shen
    Kunpeng Jia
    Fangfang Shi
    Qin Hao
    Feng Gao
    Neurochemical Research, 2021, 46 : 843 - 852
  • [50] MicroRNA-24-3p Inhibits Microglia Inflammation by Regulating MK2 Following Spinal Cord Injury
    Zhao, Lin
    Shen, Juan
    Jia, Kunpeng
    Shi, Fangfang
    Hao, Qin
    Gao, Feng
    NEUROCHEMICAL RESEARCH, 2021, 46 (04) : 843 - 852