Co-Crystallization with Diabodies: A Universal Method for the Introduction of Synthetic Symmetry

C. Chesterman, E. Arnold
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Abstract

This work presents a method for introducing synthetic symmetry into protein crystallization samples using an antibody fragment termed a diabody (Dab). These Dabs contain two target binding sites and engineered disulfide bonds have been included to modulate Dab flexibility. The introduction of a disulfide bond promotes a preferred conformation and an increased likelihood of crystallization as observed in solution by small-angle X-ray scattering and in high-resolution crystal structures. To explore the capacity of engineered Dabs as crystallization chaperones, complexes between the engineered Dabs and HIV-1 reverse transcriptase (RT) bound to a high-affinity DNA aptamer were generated. This strategy increased the crystallization hit frequency obtained for RT-aptamer and the structure of a Dab-RT-DNA complex was determined to 3.0 A resolution. Introduction of synthetic symmetry using a Dab is a broadly applicable strategy, especially when monoclonal antibodies for a target have previously been identified.
与糖体共结晶:引入合成对称性的通用方法
这项工作提出了一种方法,引入合成对称性到蛋白质结晶样品使用抗体片段称为糖尿病(Dab)。这些Dab含有两个目标结合位点和工程二硫键,以调节Dab的灵活性。通过小角度x射线散射和高分辨率晶体结构在溶液中观察到,二硫键的引入促进了首选构象和结晶可能性的增加。为了探索工程Dabs作为结晶伴侣的能力,在工程Dabs与HIV-1逆转录酶(RT)之间生成了高亲和力DNA适体结合的复合物。该策略提高了rt -适配体的结晶命中频率,并以3.0 a分辨率测定了Dab-RT-DNA复合物的结构。使用Dab引入合成对称性是一种广泛适用的策略,特别是当先前已确定目标的单克隆抗体时。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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