Tailoring structure-function and pharmacokinetic properties of single-chain Fv proteins by site-specific PEGylation.

Karen Yang, Amartya Basu, Maoliang Wang, Ramesh Chintala, Ming-Ching Hsieh, Sam Liu, Jack Hua, Zhenfan Zhang, John Zhou, Mark Li, Hnin Phyu, Gerald Petti, Magda Mendez, Haleema Janjua, Ping Peng, Clifford Longley, Virna Borowski, Mary Mehlig, David Filpula
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引用次数: 115

Abstract

The utility of single-chain Fv proteins as therapeutic agents would be realized if the circulating lives of these minimal antigen-binding polypeptides could be both prolonged and adjustable. We have developed a general strategy for creating tailored monoPEGylated single-chain antibodies. Free cysteine residues were engineered in an anti-TNF-alpha scFv at the C-terminus or within the linker segments of both scFv orientations, V(L)-linker-V(H) and V(H)-linker-V(L). High-level expression of 10 designed variant scFv proteins in Pichia pastoris allowed rapid purification. Optimization of site-specific conjugate preparation with 5, 20 and 40 kDa maleimide-PEG polymers was achieved and a comparison of the structural and functional properties of the scFv proteins and their PEGylated counterparts was performed. Peptide mapping and MALDI-TOF mass spectrometric analysis confirmed the unique attachment site for each PEG polymer. Independent biochemical and bioactivity analyses, including binding affinities and kinetics, antigenicity, flow cytometric profiling and cell cytotoxicity rescue, demonstrated that the functional activities of the 10 designed scFv conjugates are maintained, while scFv activity variations between these alternative assays can be correlated with conjugate and analytical designs. Pharmacokinetic studies of the PEGylated scFv in mice demonstrated up to 100-fold prolongation of circulating lives, in a range comparable to clinical antibodies.

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通过位点特异性聚乙二醇化修饰单链Fv蛋白的结构功能和药代动力学特性。
如果这些最小抗原结合多肽的循环寿命可以延长和调节,单链Fv蛋白作为治疗剂的效用将得以实现。我们已经开发了一种通用策略来创建定制的单乙二醇化单链抗体。游离半胱氨酸残基被设计在抗tnf - α scFv的c端或在两个scFv取向的连接段内,V(L)-连接-V(H)和V(H)-连接-V(L)。设计的10种scFv变异蛋白在毕赤酵母中高水平表达,实现了快速纯化。优化了5、20和40 kDa马来酰亚胺- peg聚合物的位点特异性偶联制备,并比较了scFv蛋白及其聚乙二醇化产物的结构和功能特性。肽图谱和MALDI-TOF质谱分析证实了每个PEG聚合物的独特附着位点。独立的生化和生物活性分析,包括结合亲和力和动力学、抗原性、流式细胞分析和细胞毒性拯救,表明10种设计的scFv偶联物的功能活性保持不变,而这些替代检测方法之间的scFv活性变化可以与偶联物和分析设计相关。聚乙二醇化scFv在小鼠体内的药代动力学研究表明,其循环寿命可延长100倍,其范围与临床抗体相当。
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