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Affinity Polymers Tailored for the Protein A Binding Site of Immunoglobulin G Proteins

机译:针对免疫球蛋白 G 蛋白的蛋白 A 结合位点定制的亲和聚合物

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摘要

Rational design in combination with a screening process was used to develop affinity polymers for a specific binding site on the surface of immunoglobulin G (IgG) proteins. The concept starts with the identification of critical amino acid residues on the protein interface and their topological arrangement. Appropriate binding monomers were subsequently synthesized. Together with a sugar monomer (2-5 equiv) for water solubility and a dansyl monomer (0.5 equiv) as a fluorescent label, they were subjected in aqueous solution to linear radical copolymerization in various compositions (e.g., azobisisobutyronitrile (AIBN), homogeneous water/DMF mixtures). After ultrafiltration and lyophilization, colorless dry water-soluble powders were obtained. NMR spectroscopic and gel permeation chromatography (GPC) characterization indicated molecular weights between 30 and 500 kD and confirmed retention of monomer composition as well as the absence of monomers. In a competitive enzyme-linked immunosorbent assay (ELISA) screen of the polymer libraries (20-50 members), few copolymers qualified as strong and selective binders for the protein A binding site on the Fc fragment of the antibody. Their monomer composition precisely reflected the critical amino acids found at the interface. The simple combination of a charged and a nonpolar binding monomer sufficed for selective submicromolar IgG recognition by the synthetic polymer. Affinities were confirmed by fluorescence titrations; they increased with decreasing salt load but remained largely unaltered at lowered pH. Other proteins, including those of similar size and isoelectric point (pI), were bound 10- 1000 times less tightly. This example indicates that interaction domains in other proteins may also be targeted by synthetic polymers if their comonomer composition reflects the nature and arrangement of amino acid residues on the protein surface.
机译:采用合理设计结合筛选工艺,开发针对免疫球蛋白G(IgG)表面特定结合位点的亲和聚合物。该概念从鉴定蛋白质界面上的关键氨基酸残基及其拓扑排列开始。随后合成了适当的结合单体。与用于水溶性的糖单体(2-5当量)和作为荧光标记的丹酰基单体(0.5当量)一起,它们在水溶液中以各种组合物(例如,偶氮二异丁腈(AIBN),均相水/DMF混合物)进行线性自由基共聚。经超滤冻干后,得到无色干燥水溶性粉末。核磁共振波谱和凝胶渗透色谱(GPC)表征表明分子量在30至500 kD之间,并确认了单体成分的保留以及单体的缺失。在聚合物库(20-50 个成员)的竞争性酶联免疫吸附测定 (ELISA) 筛选中,很少有共聚物有资格作为抗体 Fc 片段上蛋白 A 结合位点的强选择性结合剂。它们的单体组成精确地反映了在界面上发现的关键氨基酸。带电和非极性结合单体的简单组合足以使合成聚合物选择性亚微摩尔IgG识别。通过荧光滴定法确认亲和力;它们随着盐负荷的降低而增加,但在pH值降低时基本保持不变。其他蛋白质,包括具有相似大小和等电点 (pI) 的蛋白质,结合的紧密程度降低了 10-1000 倍。该示例表明,如果其他蛋白质中的相互作用结构域的共聚单体组成反映了蛋白质表面氨基酸残基的性质和排列,则合成聚合物也可以靶向其他蛋白质中的相互作用结构域。

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