首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >An Ultrahigh-Affinity Complement C4b-Specific Nanobody Inhibits In Vivo Assembly of the Classical Pathway Proconvertase
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An Ultrahigh-Affinity Complement C4b-Specific Nanobody Inhibits In Vivo Assembly of the Classical Pathway Proconvertase

机译:超高亲和力补充C4B特异性纳米抗体抑制经典途径原因曲面的体内组装

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The classical and lectin pathways of the complement system are important for the elimination of pathogens and apoptotic cells and stimulation of the adaptive immune system. Upon activation of these pathways, complement component C4 is proteolytically cleaved, and the major product C4b is deposited on the activator, enabling assembly of a C3 convertase and downstream alternative pathway amplification. Although excessive activation of the lectin and classical pathways contributes to multiple autoimmune and inflammatory diseases and overexpression of a C4 isoform has recently been linked to schizophrenia, a C4 inhibitor and structural characterization of the convertase formed by C4b is lacking. In this study, we present the nanobody hC4Nb8 that binds with picomolar affinity to human C4b and potently inhibits in vitro complement C3 deposition through the classical and lectin pathways in human serum and in mouse serum. The crystal structure of the C4b:hC4Nb8 complex and a three-dimensional reconstruction of the C4bC2 proconvertase obtained by electron microscopy together rationalize how hC4Nb8 prevents proconvertase assembly through recognition of a neoepitope exposed in C4b and reveals a unique C2 conformation compared with the alternative pathway proconvertase. On human induced pluripotent stem cell-derived neurons, the nanobody prevents C3 deposition through the classical pathway. Furthermore, hC4Nb8 inhibits the classical pathway-mediated immune complex delivery to follicular dendritic cells in vivo. The hC4Nb8 represents a novel ultrahigh-affinity inhibitor of the classical and lectin pathways of the complement cascade under both in vitro and in vivo conditions.
机译:补体系统的古典和凝集素途径对于消除病原体和凋亡细胞和适应性免疫系统的刺激是重要的。在激活这些途径后,补体组分C4是蛋白水溶性切割的,并且将主要产物C4B沉积在活化剂上,使得能够组装C3转化酶和下游替代途径扩增。虽然凝集素和经典途径过度激活有助于多种自身免疫和炎症性疾病,但最近与精神分裂症有关的C4同种型的过表达,缺乏C4B形成的C4抑制剂和转化酶的结构表征。在这项研究中,我们介绍了与人C4B的皮摩尔亲和力结合的纳米抗体HC 4 NB8,并且通过人血清中的经典和凝集素途径和小鼠血清的典型途径效果抑制体外补体C3沉积。 C4b:HC4NB8复合物的晶体结构和通过电子显微镜获得的C4BC2原逆变酶的三维重建合理化HC4NB8如何通过识别在C4B中暴露的新腔体来防止原旋蛋白组件,并揭示与替代途径原因晶片相比的独特C2构象。在人诱导的多能干细胞衍生神经元上,纳米体通过经典途径沉积C3沉积。此外,HC4NB8抑制典型的途径介导的免疫复合物递送至体内卵泡树突细胞。 HC4NB8代表在体外和体内条件下的补体级联的典型和凝集素途径的新型超高亲和力抑制剂。

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