Multifaceted Activities of Seven Nanobodies against Complement C4b

Karla I. De la O Becerra, W. Oosterheert, R. M. van den Bos, Katerina T. Xenaki, J. Lorent, M. Ruyken, A. Schouten, S. Rooijakkers, P. M. P. van Bergen en Henegouwen, P. Gros
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引用次数: 2

Abstract

Cleavage of the mammalian plasma protein C4 into C4b initiates opsonization, lysis, and clearance of microbes and damaged host cells by the classical and lectin pathways of the complement system. Dysregulated activation of C4 and other initial components of the classical pathway may cause or aggravate pathologies, such as systemic lupus erythematosus, Alzheimer disease, and schizophrenia. Modulating the activity of C4b by small-molecule or protein-based inhibitors may represent a promising therapeutic approach for preventing excessive inflammation and damage to host cells and tissue. Here, we present seven nanobodies, derived from llama (Lama glama) immunization, that bind to human C4b (Homo sapiens) with high affinities ranging from 3.2 nM to 14 pM. The activity of the nanobodies varies from no to complete inhibition of the classical pathway. The inhibiting nanobodies affect different steps in complement activation, in line with blocking sites for proconvertase formation, C3 substrate binding to the convertase, and regulator-mediated inactivation of C4b. For four nanobodies, we determined single-particle cryo-electron microscopy structures in complex with C4b at 3.4–4 Å resolution. The structures rationalize the observed functional effects of the nanobodies and define their mode of action during complement activation. Thus, we characterized seven anti-C4b nanobodies with diverse effects on the classical pathway of complement activation that may be explored for imaging, diagnostic, or therapeutic applications. Visual Abstract Key Points Diverse binding properties are revealed for seven nanobodies against C4b. Cryo-electron microscopy structures of C4b–nanobody complexes indicate nanobodies’ modes of action. Nanobodies have therapeutic potential and are useful for labeling studies.
七种纳米体对补体C4b的多方面作用
哺乳动物血浆蛋白C4裂解为C4b,通过补体系统的经典途径和凝集素途径启动微生物和受损宿主细胞的调理、裂解和清除。C4和其他经典通路初始组分的激活失调可能导致或加重系统性红斑狼疮、阿尔茨海默病和精神分裂症等疾病。通过小分子或基于蛋白质的抑制剂调节C4b的活性可能是一种有希望的治疗方法,可以防止过度炎症和对宿主细胞和组织的损害。在这里,我们提出了7个纳米小体,来源于美洲驼(Lama glama)免疫,它们与人类C4b(智人)结合,具有高亲和力,范围从3.2 nM到14 pM。纳米体的活性从不抑制到完全抑制经典途径不等。抑制纳米体影响补体激活的不同步骤,与前转化酶形成的阻断位点、C3底物与转化酶的结合以及调节剂介导的C4b失活一致。对于四种纳米体,我们以3.4-4 Å分辨率测定了C4b配合物的单粒子低温电子显微镜结构。这些结构合理化了观察到的纳米体的功能效应,并定义了它们在补体激活过程中的作用模式。因此,我们表征了七种抗c4b纳米体,它们对补体激活的经典途径有不同的影响,可以用于成像、诊断或治疗应用。结果表明,7种纳米体对C4b具有不同的结合特性。c4b -纳米体复合物的低温电子显微镜结构显示了纳米体的作用模式。纳米体具有治疗潜力,在标记研究中非常有用。
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