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Phage display selection of tight specific binding variants from a hyperthermostable Sso7d scaffold protein library

机译:从超热Sso7d支架蛋白文库中选择紧密结合特异性变体的噬菌体展示

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Antibodies, the quintessential biological recognition molecules, are not ideal for many applications because of their large size, complex modifications, and thermal and chemical instability. Identifying alternative scaffolds that may be evolved into tight, specific binding molecules with improved physical properties is of increasing interest, particularly for biomedical applications in resource-limited environments. Hyperthermophilic organisms, such as Sulfolobus solfataricus, are an attractive source of highly stable proteins that may serve as starting points for alternative molecular recognition scaffolds. We describe the first application of phage display to identify binding proteins based on the S. solfataricus protein Sso7d scaffold. Sso7d is a small cysteine-free DNA-binding protein (approximately 7 kDa, 63 amino acids), with a melting temperature of nearly 100 degrees C. Tight-binding Sso7d variants were selected for a diverse set of protein targets from a 10(10) member library, demonstrating the versatility of the scaffold. These Sso7d variants are able to discriminate among closely related human, bovine and rabbit serum albumins. Equilibrium dissociation constants in the nanomolar to low micromolar range were measured via competitive ELISA. Importantly, the Sso7d variants continue to bind their targets in the absence of the phage context. Furthermore, phage-displayed Sso7d variants retain their binding affinity after exposure to temperatures up to 70 degrees C. Taken together, our results suggest that the Sso7d scaffold will be a complementary addition to the range of non-antibody scaffold proteins that may be utilized in phage display. Variants of hyperthermostable binding proteins have potential applications in diagnostics and therapeutics for environments with extreme conditions of storage and deployment.
机译:抗体是典型的生物识别分子,由于其尺寸大,修饰复杂以及热和化学不稳定,因此对于许多应用而言并不理想。鉴定可能发展为具有改善的物理性质的紧密,特异性结合分子的替代支架的兴趣日益增加,尤其是在资源有限的环境中的生物医学应用中。嗜热菌,如Sulfolobus solfataricus,是高度稳定的蛋白质的诱人来源,可作为替代分子识别支架的起点。我们描述了噬菌体展示的首次应用,以鉴定基于S. solfataricus蛋白Sso7d支架的结合蛋白。 Sso7d是小的无半胱氨酸的DNA结合蛋白(约7 kDa,63个氨基酸),解链温度接近100摄氏度。选择了紧密结合的Sso7d变体,从10(10 )成员库,展示了该支架的多功能性。这些Sso7d变体能够区分密切相关的人,牛和兔血清白蛋白。通过竞争性ELISA测量纳摩尔至低微摩尔范围内的平衡解离常数。重要的是,在缺乏噬菌体的情况下,Sso7d变体继续结合其靶标。此外,噬菌体展示的Sso7d变异体在暴露于最高70摄氏度的温度后仍保持其结合亲和力。综上,我们的结果表明,Sso7d支架将成为可用于以下用途的一系列非抗体支架蛋白的补充。噬菌体展示。超热结合蛋白的变体在具有极端存储和部署条件的环境中,在诊断和治疗中具有潜在的应用。

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