首页> 美国卫生研究院文献>Frontiers in Immunology >The C-Type Lectin Receptor SIGNR3 Binds to Fungi Present in Commensal Microbiota and Influences Immune Regulation in Experimental Colitis
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The C-Type Lectin Receptor SIGNR3 Binds to Fungi Present in Commensal Microbiota and Influences Immune Regulation in Experimental Colitis

机译:C型凝集素受体SIGNR3绑定到常见的微生物群中的真菌并影响实验性结肠炎的免疫调节。

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摘要

Inflammatory bowel disease is a condition of acute and chronic inflammation of the gut. An important factor contributing to pathogenesis is a dysregulated mucosal immunity against commensal bacteria and fungi. Host pattern-recognition receptors (PRRs) sense commensals in the gut and are involved in maintaining the balance between controlled responses to pathogens and overwhelming innate immune activation. C-type lectin receptors (CLRs) are PRRs recognizing glycan structures on pathogens and self-antigens. Here we examined the role of the murine CLR specific intracellular adhesion molecule-3 grabbing non-integrin homolog-related 3 (SIGNR3) in the recognition of commensals and its involvement in intestinal immunity. SIGNR3 is the closest murine homolog of the human dendritic cell-specific intercellular adhesion molecule-3-grabbing non-integrin (DC-SIGN) receptor recognizing similar carbohydrate ligands such as terminal fucose or high-mannose glycans. We discovered that SIGNR3 recognizes fungi present in the commensal microbiota. To analyze whether this interaction impacts the intestinal immunity against microbiota, the dextran sulfate sodium-induced colitis model was employed. SIGNR3−/− mice exhibited an increased weight loss associated with more severe colitis symptoms compared to wild-type control mice. The increased inflammation in SIGNR3−/− mice was accompanied by a higher level of TNF-α in colon. Our findings demonstrate for the first time that SIGNR3 recognizes intestinal fungi and has an immune regulatory role in colitis.
机译:炎症性肠病是肠道急性和慢性炎症的一种状况。导致发病机理的重要因素是针对共生细菌和真菌的粘膜免疫功能失调。宿主模式识别受体(PRR)感知肠道中的共鸣,并参与维持对病原体的受控反应与压倒性先天免疫激活之间的平衡。 C型凝集素受体(CLR)是识别病原体和自身抗原上的聚糖结构的PRR。在这里,我们检查了鼠CLR特异性细胞内粘附分子3捕获非整合素同源相关3(SIGNR3)的作用,以识别共鸣及其参与肠道免疫。 SIGNR3是人类树突状细胞特异性细胞间粘附分子3捕获非整联蛋白(DC-SIGN)受体的最接近的小鼠同源物,可识别类似的碳水化合物配体,例如末端岩藻糖或高甘露糖聚糖。我们发现SIGNR3识别共生菌群中存在的真菌。为了分析这种相互作用是否会影响肠道菌群对微生物的免疫力,采用了葡聚糖硫酸钠诱导的结肠炎模型。与野生型对照小鼠相比,SIGNR3 -/-小鼠的体重减轻增加,并伴有更严重的结肠炎症状。 SIGNR3 -/-小鼠炎症增加,结肠中TNF-α水平升高。我们的发现首次证明SIGNR3识别肠道真菌并在结肠炎中具有免疫调节作用。

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