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Structure of a shark IgNAR antibody variable domain and modeling of an early-developmental isotype

机译:鲨鱼IgNAR抗体可变域的结构和早期发育同种型的建模

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摘要

The new antigen receptor (IgNAR) antibodies from sharks are disulphide bonded dimers of two protein chains, each containing one variable and five constant domains. Three types of IgNAR variable domains have been discovered, with Type 3 appearing early in shark development and being overtaken by the antigen-driven affinity-matured Type 1 and 2 response. Here, we have determined the first structure of a naturally occurring Type 2 IgNAR variable domain, and identified the disulphide bond that links and stabilizes the CDR1 and CDR3 loops. This disulphide bridge locks the CDR3 loop in an “upright” conformation in contrast to other shark antibody structures, where a more lateral configuration is observed. Further, we sought to model the Type 3 isotype based on the crystallographic structure reported here. This modeling indicates (1) that internal Type 3-specific residues combine to pack into a compact immunoglobulin core that supports the CDR loop regions, and (2) that despite apparent low-sequence variability, there is sufficient plasticity in the CDR3 loop to form a conformationally diverse antigen-binding surface.
机译:来自鲨鱼的新抗原受体(IgNAR)抗体是两条蛋白质链的二硫键结合的二聚体,每个包含一个可变域和五个恒定域。已经发现了三种类型的IgNAR可变结构域,其中3型出现在鲨鱼发育的早期,并被抗原驱动的亲和力成熟的1型和2型反应所取代。在这里,我们确定了天然存在的2型IgNAR可变域的第一个结构,并确定了连接并稳定CDR1和CDR3环的二硫键。与其他鲨鱼抗体结构相反,该二硫桥将CDR3环锁定为“直立”构型,在其他鲨鱼抗体结构中观察到了更多的侧向构型。此外,我们试图根据此处报道的晶体学结构对3型同种型进行建模。该模型表明(1)内部3型特异性残基结合在一起,形成支持CDR环区域的致密免疫球蛋白核心,(2)尽管存在明显的低序列变异性,但CDR3环中仍有足够的可塑性形成构象多样的抗原结合表面。

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