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Cryo-EM structure of P. falciparum circumsporozoite protein with a vaccine-elicited antibody is stabilized by somatically mutated inter-Fab contacts

机译:Fab接触间的体细胞突变可稳定恶性疟原虫环子孢子蛋白与疫苗诱导抗体的低温EM结构

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摘要

The circumsporozoite protein (CSP) on the surface of Plasmodium falciparum sporozoites is important for parasite development, motility, and host hepatocyte invasion. However, intrinsic disorder of the NANP repeat sequence in the central region of CSP has hindered its structural and functional characterization. Here, the cryo–electron microscopy structure at ~3.4-Å resolution of a recombinant shortened CSP construct with the variable domains (Fabs) of a highly protective monoclonal antibody reveals an extended spiral conformation of the central NANP repeat region surrounded by antibodies. This unusual structure appears to be stabilized and/or induced by interaction with an antibody where contacts between adjacent Fabs are somatically mutated and enhance the interaction. This maturation in non-antigen contact residues may be an effective mechanism for antibodies to target tandem repeat sequences and provide novel insights into malaria vaccine design.
机译:恶性疟原虫子孢子表面上的环子孢子蛋白(CSP)对于寄生虫的发育,运动性和宿主肝细胞的入侵很重要。但是,CSP中央区域中NANP重复序列的固有紊乱阻碍了其结构和功能表征。在这里,具有高度保护性的单克隆抗体的可变结构域(Fabs)的重组缩短的CSP构建物的〜3.4-Å分辨率的低温电子显微镜结构揭示了被抗体包围的中央NANP重复区域的扩展螺旋构象。这种不寻常的结构似乎通过与抗体相互作用而被稳定和/或诱导,其中相邻Fab之间的接触被体细胞突变并增强了相互作用。非抗原接触残基的这种成熟可能是抗体靶向串联重复序列的有效机制,并为疟疾疫苗设计提供了新颖的见解。

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