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Development and Differentiation in Monobodies Based on the Fibronectin Type 3 Domain

机译:基于纤连蛋白3型结构域的单体的发育和分化

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摘要

As a non-antibody scaffold, monobodies based on the fibronectin type III (FN3) domain overcome antibody size and complexity while maintaining analogous binding loops. However, antibodies and their derivatives remain the gold standard for the design of new therapeutics. In response, clinical-stage therapeutic proteins based on the FN3 domain are beginning to use native fibronectin function as a point of differentiation. The small and simple structure of monomeric monobodies confers increased tissue distribution and reduced half-life, whilst the absence of disulphide bonds improves stability in cytosolic environments. Where multi-specificity is challenging with an antibody format that is prone to mis-pairing between chains, multiple FN3 domains in the fibronectin assembly already interact with a large number of molecules. As such, multiple monobodies engineered for interaction with therapeutic targets are being combined in a similar beads-on-a-string assembly which improves both efficacy and pharmacokinetics. Furthermore, full length fibronectin is able to fold into multiple conformations as part of its natural function and a greater understanding of how mechanical forces allow for the transition between states will lead to advanced applications that truly differentiate the FN3 domain as a therapeutic scaffold.
机译:作为非抗体支架,基于纤连蛋白III型(FN3)域的抗体克服了抗体的大小和复杂性,同时保持了类似的结合环。但是,抗体及其衍生物仍然是设计新疗法的金标准。作为响应,基于FN3域的临床阶段治疗性蛋白质开始使用天然纤连蛋白功能作为分化点。单体单抗的小而简单的结构赋予其增加的组织分布和降低的半衰期,而二硫键的缺失改善了在胞质环境中的稳定性。对于容易在链之间错误配对的抗体形式,在多特异性挑战方面,纤连蛋白装配体中的多个FN3域已经与大量分子相互作用。因此,将经过改造以与治疗靶标相互作用的多个单抗体组合在类似的串珠组装中,从而提高了功效和药代动力学。此外,全长纤连蛋白能够折叠成多种构型,作为其自然功能的一部分,并且对机械力如何实现状态之间转换的更深入的了解将导致真正将FN3结构域区分为治疗支架的先进应用。

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