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通过优化表位标签插入实现 3D 结构测定的可推广 NZ-1 标记

Moving toward generalizable NZ-1 labeling for 3D structure determination with optimized epitope-tag insertion.

机构信息

Graduate School of Medical Life Science, Yokohama City University, Japan.

Institute for Protein Research, Osaka University, Japan.

出版信息

Acta Crystallogr D Struct Biol. 2021 May 1;77(Pt 5):645-662. doi: 10.1107/S2059798321002527. Epub 2021 Apr 19.

Abstract

Antibody labeling has been conducted extensively for structure determination using both X-ray crystallography and electron microscopy (EM). However, establishing target-specific antibodies is a prerequisite for applying antibody-assisted structural analysis. To expand the applicability of this strategy, an alternative method has been developed to prepare an antibody complex by inserting an exogenous epitope into the target. It has already been demonstrated that the Fab of the NZ-1 monoclonal antibody can form a stable complex with a target containing a PA12 tag as an inserted epitope. Nevertheless, it was also found that complex formation through the inserted PA12 tag inevitably caused structural changes around the insertion site on the target. Here, an attempt was made to improve the tag-insertion method, and it was consequently discovered that an alternate tag (PA14) could replace various loops on the target without inducing large structural changes. Crystallographic analysis demonstrated that the inserted PA14 tag adopts a loop-like conformation with closed ends in the antigen-binding pocket of the NZ-1 Fab. Due to proximity of the termini in the bound conformation, the more optimal PA14 tag had only a minor impact on the target structure. In fact, the PA14 tag could also be inserted into a sterically hindered loop for labeling. Molecular-dynamics simulations also showed a rigid structure for the target regardless of PA14 insertion and complex formation with the NZ-1 Fab. Using this improved labeling technique, negative-stain EM was performed on a bacterial site-2 protease, which enabled an approximation of the domain arrangement based on the docking mode of the NZ-1 Fab.

摘要

抗体标记已广泛应用于使用 X 射线晶体学和电子显微镜(EM)进行结构测定。然而,建立针对特定目标的抗体是应用抗体辅助结构分析的前提。为了扩大该策略的适用性,已经开发了一种替代方法,通过将外源性表位插入目标来制备抗体复合物。已经证明,NZ-1 单克隆抗体的 Fab 可以与含有 PA12 标签作为插入表位的目标形成稳定的复合物。然而,也发现通过插入的 PA12 标签形成复合物不可避免地导致目标上插入位点周围的结构发生变化。在这里,尝试改进了标记插入方法,结果发现替代标签(PA14)可以在不引起大的结构变化的情况下替代目标上的各种环。晶体学分析表明,插入的 PA14 标签在 NZ-1 Fab 的抗原结合口袋中采用具有封闭末端的环样构象。由于结合构象中末端的接近,更优化的 PA14 标签对目标结构的影响较小。事实上,PA14 标签也可以插入到空间位阻环中进行标记。分子动力学模拟也表明,无论是否插入 PA14 以及与 NZ-1 Fab 形成复合物,目标的结构都是刚性的。使用这种改进的标记技术,对细菌位点 2 蛋白酶进行了负染色 EM,这使得可以根据 NZ-1 Fab 的对接模式近似域排列。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc12/8098476/a233d60b09f3/d-77-00645-fig1.jpg

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