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Fusion to a highly stable consensus albumin binding domain allows for tunable pharmacokinetics

机译:融合至高度稳定的共有白蛋白结合域,可实现可调的药代动力学

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摘要

A number of classes of proteins have been engineered for high stability using consensus sequence design methods. Here we describe the engineering of a novel albumin binding domain (ABD) three-helix bundle protein. The resulting engineered ABD molecule, called ABDCon, is expressed at high levels in the soluble fraction of Escherichia coli and is highly stable, with a melting temperature of 81.5A degrees C. ABDCon binds human, monkey and mouse serum albumins with affinity as high as 61 pM. The solution structure of ABDCon is consistent with the three-helix bundle design and epitope mapping studies enabled a precise definition of the albumin binding interface. Fusion of a 10 kDa scaffold protein to ABDCon results in a long terminal half-life of 60 h in mice and 182 h in cynomolgus monkeys. To explore the link between albumin affinity and in vivo exposure, mutations were designed at the albumin binding interface of ABDCon yielding variants that span an 11 000-fold range in affinity. The PK properties of five such variants were determined in mice in order to demonstrate the tunable nature of serum half-life, exposure and clearance with variations in albumin binding affinity.
机译:使用共有序列设计方法,已经为高稳定性设计了多种蛋白质。在这里,我们描述了新型白蛋白结合域(ABD)三螺旋束蛋白的工程。所得的工程化ABD分子称为ABDCon,在大肠杆菌的可溶级分中以高水平表达,并且高度稳定,熔点为81.5A摄氏度。ABDCon结合人,猴和小鼠血清白蛋白的亲和力高达61分ABDCon的溶液结构与三螺旋束设计一致,并且表位作图研究可精确定义白蛋白结合界面。 10 kDa支架蛋白与ABDCon融合后,小鼠的终末半衰期为60 h,食蟹猴的终末半衰期为182 h。为了探索白蛋白亲和力与体内暴露之间的联系,在ABDCon的白蛋白结合界面设计了突变,其亲和力跨越了11000倍。在小鼠中确定了五个此类变体的PK特性,以证明血清半衰期,暴露和清除率具有白蛋白结合亲和力的可变性。

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