Enterocytes, fibroblasts and myeloid cells synergize in anti-bacterial and anti-viral pathways with IL22 as the central cytokine

被引:11
作者
ten Klooster, Jean Paul [1 ]
Bol-Schoenmakers, Marianne [2 ]
van Summeren, Kitty [1 ]
van Vliet, Arno L. W. [3 ]
de Haan, Cornelis A. M. [3 ]
van Kuppeveld, Frank J. M. [3 ]
Verkoeijen, Saertje [1 ]
Pieters, Raymond [1 ,2 ]
机构
[1] Univ Appl Sci Utrecht, Res Ctr Hlth & Sustainable Living, Innovat Testing Life Sci & Chem, Utrecht, Netherlands
[2] Univ Utrecht, Inst Risk Assessment Sci, Populat Hlth Sci Div, Utrecht, Netherlands
[3] Univ Utrecht, Fac Vet Med, Dept Biomol Hlth Sci, Virol Sect,Infect Dis & Immunol Div, Utrecht, Netherlands
关键词
INFLAMMATORY-BOWEL-DISEASE; DENDRITIC CELLS; ENTERIC VIROME; INTERLEUKIN; 22; MOUSE MODEL; IL-22; CORONAVIRUS; RECEPTOR; ENTRY; HOST;
D O I
10.1038/s42003-021-02176-0
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
IL22 is an important cytokine involved in the intestinal defense mechanisms against microbiome. By using ileum-derived organoids, we show that the expression of anti-microbial peptides (AMPs) and anti-viral peptides (AVPs) can be induced by IL22. In addition, we identified a bacterial and a viral route, both leading to IL22 production by T cells, but via different pathways. Bacterial products, such as LPS, induce enterocyte-secreted SAA1, which triggers the secretion of IL6 in fibroblasts, and subsequently IL22 in T cells. This IL22 induction can then be enhanced by macrophage-derived TNF alpha in two ways: by enhancing the responsiveness of T cells to IL6 and by increasing the expression of IL6 by fibroblasts. Viral infections of intestinal cells induce IFN beta 1 and subsequently IL7. IFN beta 1 can induce the expression of IL6 in fibroblasts and the combined activity of IL6 and IL7 can then induce IL22 expression in T cells. We also show that IL22 reduces the expression of viral entry receptors (e.g. ACE2, TMPRSS2, DPP4, CD46 and TNFRSF14), increases the expression of anti-viral proteins (e.g. RSAD2, AOS, ISG20 and Mx1) and, consequently, reduces the viral infection of neighboring cells. Overall, our data indicates that IL22 contributes to the innate responses against both bacteria and viruses. ten Klooster et al. use ileum-derived organoids and report that bacterial and viral stimuli can drive IL22 production by T cells via distinct signaling pathways, and that IL22 can stimulate expression of anti-microbial and antiviral factors. This study sheds light on how enterocytes, fibroblasts and myeloid cells work synergistically to induce IL22 response against both bacteria and viruses.
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页数:13
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共 60 条
[11]   Innate lymphoid cells regulate intestinal epithelial cell glycosylation [J].
Goto, Yoshiyuki ;
Obata, Takashi ;
Kunisawa, Jun ;
Sato, Shintaro ;
Ivanov, Ivaylo I. ;
Lamichhane, Aayam ;
Takeyama, Natsumi ;
Kamioka, Mariko ;
Sakamoto, Mitsuo ;
Matsuki, Takahiro ;
Setoyama, Hiromi ;
Imaoka, Akemi ;
Uematsu, Satoshi ;
Akira, Shizuo ;
Domino, Steven E. ;
Kulig, Paulina ;
Becher, Burkhard ;
Renauld, Jean-Christophe ;
Sasakawa, Chihiro ;
Umesaki, Yoshinori ;
Benno, Yoshimi ;
Kiyono, Hiroshi .
SCIENCE, 2014, 345 (6202) :1310-+
[12]   IL-22 modulates IL-17A production and controls inflammation and tissue damage in experimental dengue infection [J].
Guabiraba, Rodrigo ;
Besnard, Anne-Gaelle ;
Marques, Rafael E. ;
Maillet, Isabelle ;
Fagundes, Caio T. ;
Conceicao, Thais M. ;
Rust, Naiara M. ;
Charreau, Sandrine ;
Paris, Isabelle ;
Lecron, Jean-Claude ;
Renauld, Jean-Christophe ;
Quesniaux, Valerie ;
Da Poian, Andrea T. ;
Arruda, Luciana B. ;
Souza, Danielle G. ;
Ryffel, Bernhard ;
Teixeira, Mauro M. .
EUROPEAN JOURNAL OF IMMUNOLOGY, 2013, 43 (06) :1529-1544
[13]   The development of colitis in Il10-/- mice is dependent on IL-22 [J].
Gunasekera, Dilini C. ;
Ma, Jinxia ;
Vacharathit, Vimvara ;
Shah, Palak ;
Ramakrishnan, Amritha ;
Uprety, Priyanka ;
Shen, Zeli ;
Sheh, Alexander ;
Brayton, Cory F. ;
Whary, Mark T. ;
Fox, James G. ;
Bream, Jay H. .
MUCOSAL IMMUNOLOGY, 2020, 13 (03) :493-506
[14]   Interleukin-22 (IL-22) Production by Pulmonary Natural Killer Cells and the Potential Role of IL-22 during Primary Influenza Virus Infection [J].
Guo, Hailong ;
Topham, David J. .
JOURNAL OF VIROLOGY, 2010, 84 (15) :7750-7759
[15]   Genetic Manipulation of Human Intestinal Enteroids Demonstrates the Necessity of a Functional Fucosyltransferase 2 Gene for Secretor-Dependent Human Norovirus Infection [J].
Haga, Kei ;
Ettayebi, Khalil ;
Tenge, Victoria R. ;
Karandikar, Umesh C. ;
Lewis, Miranda A. ;
Lin, Shih-Ching ;
Neill, Frederick H. ;
Ayyar, B. Vijayalakshmi ;
Zeng, Xi-Lei ;
Larson, Goran ;
Ramani, Shraddha ;
Atmar, Robert L. ;
Estes, Mary K. .
MBIO, 2020, 11 (02)
[16]   Targeting the IL-22/IL-22BP axis enhances tight junctions and reduces inflammation during influenza infection [J].
Hebert, K. D. ;
Mclaughlin, N. ;
Galeas-Pena, M. ;
Zhang, Z. ;
Eddens, T. ;
Govero, A. ;
Pilewski, J. M. ;
Kolls, J. K. ;
Pociask, D. A. .
MUCOSAL IMMUNOLOGY, 2020, 13 (01) :64-74
[17]  
Hemmi Hiroaki, 2005, V86, P120, DOI 10.1159/000086657
[18]   Interferon-λ and interleukin 22 act synergistically for the induction of interferon-stimulated genes and control of rotavirus infection [J].
Hernandez, Pedro P. ;
Mahlakoiv, Tanel ;
Yang, Ines ;
Schwierzeck, Vera ;
Nam Nguyen ;
Guendel, Fabian ;
Gronke, Konrad ;
Ryffel, Bernhard ;
Hoelscher, Christoph ;
Dumoutier, Laure ;
Renauld, Jean-Christophe ;
Suerbaum, Sebastian ;
Staeheli, Peter ;
Diefenbach, Andreas .
NATURE IMMUNOLOGY, 2015, 16 (07) :698-+
[19]   SARS-CoV-2 Cell Entry Depends on ACE2 and TMPRSS2 and Is Blocked by a Clinically Proven Protease Inhibitor [J].
Hoffmann, Markus ;
Kleine-Weber, Hannah ;
Schroeder, Simon ;
Krueger, Nadine ;
Herrler, Tanja ;
Erichsen, Sandra ;
Schiergens, Tobias S. ;
Herrler, Georg ;
Wu, Nai-Huei ;
Nitsche, Andreas ;
Mueller, Marcel A. ;
Drosten, Christian ;
Poehlmann, Stefan .
CELL, 2020, 181 (02) :271-+
[20]   Gastrointestinal mucins of Fut2-null mice lack terminal fucosylation without affecting colonization by Candida albicans [J].
Hurd, EA ;
Holmén, JM ;
Hansson, GC ;
Domino, SE .
GLYCOBIOLOGY, 2005, 15 (10) :1002-1007