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Extending Serum Half-life of Albumin by Engineering Neonatal Fc Receptor (FcRn) Binding

机译:通过工程化新生儿Fc受体(FcRn)结合延长白蛋白的血清半衰期

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摘要

A major challenge for the therapeutic use of many peptides and proteins is their short circulatory half-life. Albumin has an extended serum half-life of 3 weeks because of its size and FcRn-mediated recycling that prevents intracellular degradation, properties shared with IgG antibodies. Engineering the strictly pH-dependent IgG-FcRn interaction is known to extend IgG half-life. However, this principle has not been extensively explored for albumin. We have engineered human albumin by introducing single point mutations in the C-terminal end that generated a panel of variants with greatly improved affinities for FcRn. One variant (K573P) with 12-fold improved affinity showed extended serum half-life in normal mice, mice transgenic for human FcRn, and cynomolgus monkeys. Importantly, favorable binding to FcRn was maintained when a single-chain fragment variable antibody was genetically fused to either the N- or the C-terminal end. The engineered albumin variants may be attractive for improving the serum half-life of biopharmaceuticals.
机译:治疗许多肽和蛋白质的主要挑战是其短的循环半衰期。白蛋白由于其大小和FcRn介导的回收防止细胞内降解(与IgG抗体共享的特性)而具有3周的延长的血清半衰期。工程化严格依赖pH值的IgG-FcRn相互作用可延长IgG半衰期。然而,尚未针对白蛋白广泛探索该原理。我们通过在C末端引入单点突变来改造人白蛋白,从而产生了一组具有极大改善的FcRn亲和力的变体。一种亲和力提高了12倍的变体(K573P)在正常小鼠,对人FcRn转基因的小鼠和食蟹猴中显示出延长的血清半衰期。重要的是,当单链片段可变抗体遗传融合到N端或C端时,可保持与FcRn的有利结合。工程化的白蛋白变体对于改善生物药物的血清半衰期可能是有吸引力的。

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