Zuyi Fu, Matevž Rumpret, Irina Kube-Golovin, Mykola Lyndin, Vera Solntceva, Yuxi Zhao, Anastasia Konieva, Na Liu, Adrian T Press, Stefanie B Flohé, Michael Bauer, Gunther Wennemuth, Bernhard B Singer, Alex J McCarthy
{"title":"LILRA5诱导先天免疫细胞产生ROS的功能","authors":"Zuyi Fu, Matevž Rumpret, Irina Kube-Golovin, Mykola Lyndin, Vera Solntceva, Yuxi Zhao, Anastasia Konieva, Na Liu, Adrian T Press, Stefanie B Flohé, Michael Bauer, Gunther Wennemuth, Bernhard B Singer, Alex J McCarthy","doi":"10.1002/eji.70079","DOIUrl":null,"url":null,"abstract":"<p><p>Activating immune receptors provides mechanisms for phagocytes to elicit important effector functions that promote the killing of microbes. Leukocyte immunoglobulin-like receptor A5 (LILRA5), an orphan immune receptor expressed by human phagocytes and co-localising with FcRγ, remains poorly characterised. To address this, we developed a highly specific anti-LILRA5 monoclonal antibody that has agonistic properties. We show LILRA5 expression on naïve monocytes and neutrophils, and that ligation of LILRA5 stimulates ROS production. While increased LILRA5 transcripts have been associated with sepsis, we also observed increased levels in patients with systemic infection but without sepsis complications. Ex vivo bacterial infection of whole blood did not alter surface LILRA5 expression, but LPS stimulation changed expression levels, indicating that surface LILRA5 expression is dynamic and likely regulated post-transcriptionally, changing responses to different stimuli or over time. Soluble (s)LILRA5 was enhanced in sera from sepsis patients and in supernatants of monocytes that were LPS-stimulated, indicating that shedding of LILRA5 from cell surfaces or that expression of sLILRA5 isoforms provides a mechanism to regulate surface LILRA5 expression levels. Finally, we show that altered surface LILRA5 expression influences LILRA5-induced ROS production capacity. Thus, LILRA5 is a dynamically regulated activating receptor expressed on phagocytes that stimulates ROS production.</p>","PeriodicalId":165,"journal":{"name":"European Journal of Immunology","volume":"55 10","pages":"e70079"},"PeriodicalIF":3.7000,"publicationDate":"2025-10-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC12537994/pdf/","citationCount":"0","resultStr":"{\"title\":\"LILRA5 Functions to Induce ROS Production on Innate Immune Cells.\",\"authors\":\"Zuyi Fu, Matevž Rumpret, Irina Kube-Golovin, Mykola Lyndin, Vera Solntceva, Yuxi Zhao, Anastasia Konieva, Na Liu, Adrian T Press, Stefanie B Flohé, Michael Bauer, Gunther Wennemuth, Bernhard B Singer, Alex J McCarthy\",\"doi\":\"10.1002/eji.70079\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>Activating immune receptors provides mechanisms for phagocytes to elicit important effector functions that promote the killing of microbes. Leukocyte immunoglobulin-like receptor A5 (LILRA5), an orphan immune receptor expressed by human phagocytes and co-localising with FcRγ, remains poorly characterised. To address this, we developed a highly specific anti-LILRA5 monoclonal antibody that has agonistic properties. We show LILRA5 expression on naïve monocytes and neutrophils, and that ligation of LILRA5 stimulates ROS production. While increased LILRA5 transcripts have been associated with sepsis, we also observed increased levels in patients with systemic infection but without sepsis complications. Ex vivo bacterial infection of whole blood did not alter surface LILRA5 expression, but LPS stimulation changed expression levels, indicating that surface LILRA5 expression is dynamic and likely regulated post-transcriptionally, changing responses to different stimuli or over time. Soluble (s)LILRA5 was enhanced in sera from sepsis patients and in supernatants of monocytes that were LPS-stimulated, indicating that shedding of LILRA5 from cell surfaces or that expression of sLILRA5 isoforms provides a mechanism to regulate surface LILRA5 expression levels. Finally, we show that altered surface LILRA5 expression influences LILRA5-induced ROS production capacity. 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LILRA5 Functions to Induce ROS Production on Innate Immune Cells.
Activating immune receptors provides mechanisms for phagocytes to elicit important effector functions that promote the killing of microbes. Leukocyte immunoglobulin-like receptor A5 (LILRA5), an orphan immune receptor expressed by human phagocytes and co-localising with FcRγ, remains poorly characterised. To address this, we developed a highly specific anti-LILRA5 monoclonal antibody that has agonistic properties. We show LILRA5 expression on naïve monocytes and neutrophils, and that ligation of LILRA5 stimulates ROS production. While increased LILRA5 transcripts have been associated with sepsis, we also observed increased levels in patients with systemic infection but without sepsis complications. Ex vivo bacterial infection of whole blood did not alter surface LILRA5 expression, but LPS stimulation changed expression levels, indicating that surface LILRA5 expression is dynamic and likely regulated post-transcriptionally, changing responses to different stimuli or over time. Soluble (s)LILRA5 was enhanced in sera from sepsis patients and in supernatants of monocytes that were LPS-stimulated, indicating that shedding of LILRA5 from cell surfaces or that expression of sLILRA5 isoforms provides a mechanism to regulate surface LILRA5 expression levels. Finally, we show that altered surface LILRA5 expression influences LILRA5-induced ROS production capacity. Thus, LILRA5 is a dynamically regulated activating receptor expressed on phagocytes that stimulates ROS production.
期刊介绍:
The European Journal of Immunology (EJI) is an official journal of EFIS. Established in 1971, EJI continues to serve the needs of the global immunology community covering basic, translational and clinical research, ranging from adaptive and innate immunity through to vaccines and immunotherapy, cancer, autoimmunity, allergy and more. Mechanistic insights and thought-provoking immunological findings are of interest, as are studies using the latest omics technologies. We offer fast track review for competitive situations, including recently scooped papers, format free submission, transparent and fair peer review and more as detailed in our policies.