Pivotal role of the carbohydrate recognition domain in self-interaction of CLEC4A to elicit the ITIM-mediated inhibitory function in murine conventional dendritic cells in vitro

Author:

Nasu Junta12,Uto Tomofumi13,Fukaya Tomohiro13,Takagi Hideaki13,Fukui Takehito12,Miyanaga Noriaki14,Nishikawa Yotaro15,Yamasaki Sho67,Yamashita Yoshihiro2,Sato Katsuaki13

Affiliation:

1. Division of Immunology, Department of Infectious Diseases, Faculty of Medicine

2. Department of Oral and Maxillofacial Surgery, Faculty of Medicine, University of Miyazaki, 5200 Kihara, Kiyotake, Miyazaki, Japan

3. Japan Agency for Medical Research and Development (AMED), 1-7-1 Otemachi, Chiyoda-ku, Tokyo, Japan

4. Department of Otolaryngology, Head and Neck Surgery, Faculty of Medicine

5. Department of Dermatology, Faculty of Medicine, University of Miyazaki, 5200 Kihara, Kiyotake, Miyazaki, Japan

6. Department of Molecular Immunology, Research Institute for Microbial Diseases

7. Laboratory of Molecular Immunology, Immunology Frontier Research Center, Osaka University, Suita, Osaka, Japan

Abstract

Abstract C-type lectin receptors (CLRs), pattern recognition receptors (PRRs) with a characteristic carbohydrate recognition domain (CRD) in the extracellular portion, mediate crucial cellular functions upon recognition of glycosylated pathogens and self-glycoproteins. CLEC4A is the only classical CLR that possesses an intracellular immunoreceptor tyrosine-based inhibitory motif (ITIM), which possibly transduces negative signals. However, how CLEC4A exerts cellular inhibition remains unclear. Here, we report that the self-interaction of CLEC4A through the CRD is required for the ITIM-mediated suppressive function in conventional dendritic cells (cDCs). Human type 2 cDCs (cDC2) and monocytes display a higher expression of CLEC4A than cDC1 and plasmacytoid DCs (pDCs) as well as B cells. The extracellular portion of CLEC4A specifically binds to a murine cDC cell line expressing CLEC4A, while its extracellular portion lacking the N-glycosylation site or the EPS motif within the CRD reduces their association. Furthermore, the deletion of the EPS motif within the CRD or ITIM in CLEC4A almost completely impairs its suppressive effect on the activation of the murine cDC cell line, whereas the absence of the N-glycosylation site within the CRD exhibits partial inhibition on their activation. On the other hand, antagonistic monoclonal antibody (mAb) to CLEC4A, which inhibits the self-interaction of CLEC4A and its downstream signaling in murine transfectants, enhances the activation of monocytes and monocyte-derived immature DCs upon stimulation with a Toll-like receptor (TLR) ligand. Thus, our findings suggest a pivotal role of the CRD in self-interaction of CLEC4A to elicit the ITIM-mediated inhibitory signal for the control of the function of cDCs.

Funder

Grant-in-Aid for Scientific Research

Challenging Exploratory Research

Young Scientists Fund

Ministry of Education, Science and Culture of Japan

Project for Cancer Research And Therapeutic Evolution

Japan Agency for Medical Research and Development

Uehara Memorial Foundation

Takeda Science Foundation

Naito Foundation

Bristol-Myers Squibb Foundation

Daiichi Sankyo Foundation of Life Science

Nipponham Foundation

Shin-Nihon Foundation of Advanced Medical Research

Publisher

Oxford University Press (OUP)

Subject

Immunology,General Medicine,Immunology and Allergy

Reference27 articles.

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5. Inhibitory C-type lectin receptors in myeloid cells;Redelinghuys;Immunol. Lett,2011

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