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Development of GFP-based biosensors possessing the binding properties of antibodies

机译:具有抗体结合特性的基于GFP的生物传感器的开发

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Proteins that can bind specifically to targets that also have an intrinsic property allowing for easy detection could facilitate a multitude of applications. While the widely used green fluorescent protein (GFP) allows for easy detection, attempts to insert multiple binding loops into GFP to impart affinity for a specific target have been met with limited success because of the structural sensitivity of the GFP chro-mophore. In this study, directed evolution using a surrogate loop approach and yeast surface display yielded a family of GFP scaffolds capable of accommodating 2 proximal, randomized binding loops. The library of potential GFP-based binders or "GFAbs" was subsequently mined for GFAbs capable of binding to protein targets. Identified GFAbs bound with nanomolar affinity and required binding contributions from both loops indicating the advantage of a dual loop GFAb platform. Finally, GFAbs were solubly produced and used as fluorescence detection reagents to demonstrate their utility.
机译:可以特异性结合靶标的蛋白也具有固有特性,易于检测,可以促进多种应用。尽管广泛使用的绿色荧光蛋白(GFP)易于检测,但由于GFP色团的结构敏感性,尝试将多个结合环插入GFP以赋予对特定靶标的亲和力的尝试取得了有限的成功。在这项研究中,使用替代环方法和酵母表面展示的定向进化产生了一个能够容纳2个近端,随机结合环的GFP支架家族。随后,针对可能结合蛋白靶标的GFAb,挖掘了潜在的基于GFP的结合物或“ GFAb”库。鉴定出与纳摩尔亲和力结合的GFAb,并且需要两个环的结合贡献,表明双环GFAb平台具有优势。最后,GFAbs可溶产生并用作荧光检测试剂以证明其实用性。

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