Literature DB >> 25156364

Differential control of Mincle-dependent cord factor recognition and macrophage responses by the transcription factors C/EBPβ and HIF1α.

Hanne Schoenen1, Alexandra Huber1, Nada Sonda2, Stephanie Zimmermann3, Jonathan Jantsch4, Bernd Lepenies3, Vincenzo Bronte5, Roland Lang6.   

Abstract

Trehalose-6,6-dimycolate (TDM), the mycobacterial cord factor, and its synthetic analog Trehalose-6,6-dibehenate (TDB) bind to the C-type lectin receptors macrophage-inducible C-type lectin (Mincle) and Mcl to activate macrophages. Genetically, the transcriptional response to TDB/TDM has been defined to require FcRγ-Syk-Card9 signaling. However, TDB/TDM-triggered kinase activation has not been studied well, and it is largely unknown which transcriptional regulators bring about inflammatory gene expression. In this article, we report that TDB/TDM caused only weak Syk-phosphorylation in resting macrophages, consistent with low basal Mincle expression. However, LPS-priming caused MYD88-dependent upregulation of Mincle, resulting in enhanced TDB/TDM-induced kinase activation and more rapid inflammatory gene expression. TLR-induced Mincle expression partially circumvented the requirement for Mcl in the response to TDB/TDM. To dissect transcriptional responses to TDB/TDM, we mined microarray data and identified early growth response (Egr) family transcription factors as direct Mincle target genes, whereas upregulation of Cebpb and Hif1a required new protein synthesis. Macrophages and dendritic cells lacking C/EBPβ showed nearly complete abrogation of TDB/TDM responsiveness, but also failed to upregulate Mincle. Retroviral rescue of Mincle expression in Cebpb-deficient cells restored induction of Egr1, but not of G-CSF. This pattern of C/EBPβ dependence was also observed after stimulation with the Dectin-1 ligand Curdlan. Inducible expression of hypoxia-inducible factor 1α (HIF1α) also required C/EBPβ. In turn, HIF1α was not required for Mincle expression, kinase activation, and Egr1 or Csf3 expression, but critically contributed to NO production. Taken together, we identify C/EBPβ as central hub in Mincle expression and inflammatory gene induction, whereas HIF1α controls Nos2 expression. C/EBPβ also connects TLR signals to cord factor responsiveness through MYD88-dependent upregulation of Mincle.
Copyright © 2014 by The American Association of Immunologists, Inc.

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Year:  2014        PMID: 25156364     DOI: 10.4049/jimmunol.1301593

Source DB:  PubMed          Journal:  J Immunol        ISSN: 0022-1767            Impact factor:   5.422


  24 in total

1.  Macrophage Phosphoproteome Analysis Reveals MINCLE-dependent and -independent Mycobacterial Cord Factor Signaling.

Authors:  Madlen Hansen; Julian Peltier; Barbara Killy; Bushra Amin; Barbara Bodendorfer; Anetta Härtlova; Sebastian Uebel; Markus Bosmann; Jörg Hofmann; Christian Büttner; Arif B Ekici; Mario Kuttke; Henrik Franzyk; Camilla Foged; Sandra Beer-Hammer; Gernot Schabbauer; Matthias Trost; Roland Lang
Journal:  Mol Cell Proteomics       Date:  2019-01-11       Impact factor: 5.911

2.  Genome-Wide Mapping of DNA Accessibility and Binding Sites for CREB and C/EBPβ in Vasopressin-Sensitive Collecting Duct Cells.

Authors:  Hyun Jun Jung; Viswanathan Raghuram; Jae Wook Lee; Mark A Knepper
Journal:  J Am Soc Nephrol       Date:  2018-03-23       Impact factor: 10.121

3.  Toll-Like Receptor 2 and Mincle Cooperatively Sense Corynebacterial Cell Wall Glycolipids.

Authors:  Judith Schick; Philipp Etschel; Rebeca Bailo; Lisa Ott; Apoorva Bhatt; Bernd Lepenies; Carsten Kirschning; Andreas Burkovski; Roland Lang
Journal:  Infect Immun       Date:  2017-06-20       Impact factor: 3.441

4.  Myeloid Cell-Derived HIF-1α Promotes Control of Leishmania major.

Authors:  Valentin Schatz; Yannic Strüssmann; Alexander Mahnke; Gunnar Schley; Maximilian Waldner; Uwe Ritter; Jens Wild; Carsten Willam; Nathalie Dehne; Bernhard Brüne; Jennifer M McNiff; Oscar R Colegio; Christian Bogdan; Jonathan Jantsch
Journal:  J Immunol       Date:  2016-10-17       Impact factor: 5.422

5.  Mincle Signaling Promotes Con A Hepatitis.

Authors:  Stephanie H Greco; Alejandro Torres-Hernandez; Aleksandr Kalabin; Clint Whiteman; Rae Rokosh; Sushma Ravirala; Atsuo Ochi; Johana Gutierrez; Muhammad Atif Salyana; Vishnu R Mani; Savitha V Nagaraj; Michael Deutsch; Lena Seifert; Donnele Daley; Rocky Barilla; Mautin Hundeyin; Yuriy Nikifrov; Karla Tejada; Bruce E Gelb; Steven C Katz; George Miller
Journal:  J Immunol       Date:  2016-08-24       Impact factor: 5.422

6.  Mycobacterial Trehalose 6,6'-Dimycolate-Induced M1-Type Inflammation.

Authors:  Thao K T Nguyen; John d'Aigle; Luis Chinea; Zainab Niaz; Robert L Hunter; Shen-An Hwang; Jeffrey K Actor
Journal:  Am J Pathol       Date:  2019-11-14       Impact factor: 4.307

7.  Lipoteichoic acid anchor triggers Mincle to drive protective immunity against invasive group A Streptococcus infection.

Authors:  Takashi Imai; Takayuki Matsumura; Sabine Mayer-Lambertz; Christine A Wells; Eri Ishikawa; Suzanne K Butcher; Timothy C Barnett; Mark J Walker; Akihiro Imamura; Hideharu Ishida; Tadayoshi Ikebe; Tomofumi Miyamoto; Manabu Ato; Shouichi Ohga; Bernd Lepenies; Nina M van Sorge; Sho Yamasaki
Journal:  Proc Natl Acad Sci U S A       Date:  2018-10-23       Impact factor: 11.205

Review 8.  C-type lectin receptors in tuberculosis: what we know.

Authors:  Surabhi Goyal; Tilman E Klassert; Hortense Slevogt
Journal:  Med Microbiol Immunol       Date:  2016-07-28       Impact factor: 3.402

9.  Differential transcriptional response in macrophages infected with cell wall deficient versus normal Mycobacterium Tuberculosis.

Authors:  Yu-Rong Fu; Kun-Shan Gao; Rui Ji; Zheng-Jun Yi
Journal:  Int J Biol Sci       Date:  2015-01-01       Impact factor: 6.580

10.  Stabilization of Hypoxia-Inducible Factor Promotes Antimicrobial Activity of Human Macrophages Against Mycobacterium tuberculosis.

Authors:  Sebastian F Zenk; Sebastian Hauck; Daniel Mayer; Mark Grieshober; Steffen Stenger
Journal:  Front Immunol       Date:  2021-06-02       Impact factor: 7.561

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