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针对不同血清型腺相关病毒的衣壳抗体结合共同区域。

Capsid antibodies to different adeno-associated virus serotypes bind common regions.

机构信息

Deptartment of Biochemistry and Molecular Biology, University of Florida, Gainesville, Florida, USA.

出版信息

J Virol. 2013 Aug;87(16):9111-24. doi: 10.1128/JVI.00622-13. Epub 2013 Jun 12.

Abstract

Interactions between viruses and the host antibody immune response are critical in the development and control of disease, and antibodies are also known to interfere with the efficacy of viral vector-based gene delivery. The adeno-associated viruses (AAVs) being developed as vectors for corrective human gene delivery have shown promise in clinical trials, but preexisting antibodies are detrimental to successful outcomes. However, the antigenic epitopes on AAV capsids remain poorly characterized. Cryo-electron microscopy and three-dimensional image reconstruction were used to define the locations of epitopes to which monoclonal fragment antibodies (Fabs) against AAV1, AAV2, AAV5, and AAV6 bind. Pseudoatomic modeling showed that, in each serotype, Fabs bound to a limited number of sites near the protrusions surrounding the 3-fold axes of the T=1 icosahedral capsids. For the closely related AAV1 and AAV6, a common Fab exhibited substoichiometric binding, with one Fab bound, on average, between two of the three protrusions as a consequence of steric crowding. The other AAV Fabs saturated the capsid and bound to the walls of all 60 protrusions, with the footprint for the AAV5 antibody extending toward the 5-fold axis. The angle of incidence for each bound Fab on the AAVs varied and resulted in significant differences in how much of each viral capsid surface was occluded beyond the Fab footprints. The AAV-antibody interactions showed a common set of footprints that overlapped some known receptor-binding sites and transduction determinants, thus suggesting potential mechanisms for virus neutralization by the antibodies.

摘要

病毒与宿主抗体免疫反应的相互作用对疾病的发展和控制至关重要,抗体也已知会干扰基于病毒载体的基因传递的疗效。腺相关病毒(AAV)作为纠正人类基因传递的载体在临床试验中显示出前景,但预先存在的抗体对成功的结果是有害的。然而,AAV 衣壳上的抗原表位仍然描述不足。使用冷冻电子显微镜和三维图像重建来定义针对 AAV1、AAV2、AAV5 和 AAV6 的单克隆片段抗体(Fabs)结合的表位的位置。拟原子建模表明,在每种血清型中,Fabs 结合到围绕 T=1 二十面体衣壳的 3 倍轴的突起周围的有限数量的位点。对于密切相关的 AAV1 和 AAV6,一种共同的 Fab 表现出亚化学计量的结合,由于空间拥挤,一个 Fab 平均结合在三个突起中的两个之间。其他 AAV Fab 使衣壳饱和,并结合到所有 60 个突起的壁上,AAV5 抗体的足迹延伸到 5 倍轴。每个结合 Fab 在 AAV 上的入射角不同,导致 Fab 足迹之外的每个病毒衣壳表面被遮挡的程度有很大差异。AAV-抗体相互作用显示出一组常见的足迹,重叠了一些已知的受体结合位点和转导决定因素,因此提示了抗体中和病毒的潜在机制。

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